
Ling Jiang, Professor, PhD
State Key Laboratory of Molecular Reaction Dynamics
Dalian Institute of Chemical Physics, Chinese Academy of Sciences
457 Zhongshan Road, Dalian 116023, China.
Tel: +86-411-84379857
E-mail: ljiang@dicp.ac.cn
Research Areas
Our research interest is mainly focused on the development of infrared photodissociation and photoelectron spectroscopy based on Vacuum Ultraviolet Free Electron Laser and Infrared Free Electron Laser, and their applications to the studies on atmospheric chemistry and structure-reactivity relationship of nanoclusters.
Research Interests:
(1) Atmospheric Chemistry:
Environmental pollution in the earth atmosphere is becoming a serious issue in the developing world as it is causing severe health and traffic problems for human society. Understanding the mechanism of aerosol growth is the prerequisite to control the atmospheric pollution problems. Generally, molecular clusters are formed initially between pollutant molecules and water molecules, and the clusters then grow in the atmosphere environment to form larger aerosol particles.
(2) Structure-reactivity Relationship of Nanoclusters:
A number of key reaction intermediates are often involved in the catalytic reaction processes. Due to the low number density and short lifetime of these species, the methods with high sensitivity and transient detection are thus required to explore the structural and dynamic properties of the reaction intermediates. We use high-resolution reflectron time of flight mass spectrometer to capture reaction intermediates, and the high-sensitive infrared photodissociation spectroscopy and photoelectron spectroscopy to characterize the geometric and electronic structures of these key species to understand the elementary and catalytic reaction mechanism.
A key issue in the study of aerosol science is how aerosol particles are formed initially in the atmosphere and how they grow under different conditions. Soft photo-ionization mass spectrometry technique can be a powerful tool to study single aerosol particles and their nucleation processes. At the Dalian Coherent Light Source (DCLS), experiments using single aerosol particle mass spectrometer will be carried out to study the structure of aerosol particles and unravel the mechanism of aerosol nucleation processes.
Research Methods:
(1) Experimentally: Infrared-Vacuum Ultraviolet spectroscopy, Infrared photodissociation spectroscopy, and photoelectron spectroscopy
(2) Theoretically: quantum chemical calculation and molecular dynamics simulation
Website: http://www.cluster.dicp.ac.cn
Education
2007 Kobe University, Japan, Phd
Experience
Work Experience
2011.8-now, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Professor
2009-2011, Fritz-Haber-Institut der Max-Planck-Gesellschaft, Germany, Humboldt Fellow
2007-2009, National Institute of Advanced Industrial Science and Technology (AIST), Japan, JSPS Fellow
Honors & Distinctions
(1) 2021, Distinguished Young Scholars, National Natural Science Fund of China
(2) 2021, Chinese Chemical Society, Zhang Cunhao Chemical Reaction Dynamics, The Young Scientist Award
(3) 2018, Japan Society for Molecular Science, The Distinguished Lectureship Award
(4) 2013, Talents Program of Chinese Academy of Sciences, China
(5) 2009-2011, Alexander von Humboldt Fellowship
(6) 2007-2009, Japan Society for the Promotion of Science (JSPS) Fellowship
(7) 2005-2007, Japanese Government Scholarship from the Ministry of Education, Culture, Sports, Science and Technology (MEXT), Japan
(8) 2005-2006, A Grant for Communication Research, Marubun Research Promotion Foundation, Japan
Publications
Papers
| 2023 |
148. | Effects of NO2 and SO2 on the secondary organic aerosol formation from beta-pinene photooxidation Xiangyu Zang, Zhaoyan Zhang, Yingqi Zhao, Gang Li, Hua Xie, Weiqing Zhang, Guorong Wu, Xueming Yang, and Ling Jiang* J. Environ. Sci., 2023, in press. |
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147. | Dinitrogen activation by heteronuclear bimetallic cluster anion FeV– in the gas phase Shihu Du,# Xuegang Liu,# Zhiling Liu, Gang Li, Hongjun Fan, Hua Xie,* and Ling Jiang* JACS Au, in press. |
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146. | Accurate calculation of tunneling splittings in water clusters using path-integral based methods Yucheng Zhu, Shuo Yang, Jiaxi Zeng, Wei Fang, Ling Jiang, Dong H. Zhang,* and Xin-Zheng Li* J. Chem. Phys., 2023, in press. |
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145. | Size-specific infrared spectroscopic study of the reactions between water molecules and neutral vanadium dimer: Evidence for water splitting Huijun Zheng, Shuai Jiang, Wenhui Yan, Tiantong Wang, Shangdong Li, Hua Xie, Gang Li,* Xueming Yang, and Ling Jiang* J. Phys. Chem. Lett., 2023, 14, 3878-3883. |
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144. | Semiclassical vibrational spectroscopy of real molecular systems by means of cross-correlation filter diagonalization Jia-Xi Zeng, Shuo Yang, Yu-Cheng Zhu,* Wei Fang, Ling Jiang, En-Ge Wang, Dong H. Zhang, and Xin-Zheng Li* J. Phys. Chem. A, 2023, 127, 2902-2911. |
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143. | Autoxidation mechanism and kinetics of methacrolein in the atmosphere Zhaoyan Zhang, Chong Wang, Yingqi Zhao, Ya Zhao, Gang Li, Hua Xie, and Ling Jiang* J. Phys. Chem. A, 2023, 127, 2819-2829. |
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142. | Capturing hydrogen radicals by neutral metal hydroxides Shuai Jiang, Huijun Zheng, Wenhui Yan, Tiantong Wang, Chong Wang, Shangdong Li, Hua Xie, Gang Li,* Xiucheng Zheng,* Hongjun Fan,* Xueming Yang, and Ling Jiang* J. Phys. Chem. Lett., 2023, 14, 2481-2486. |
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141. | Spectroscopic identification of water splitting by neutral group 3 metals Shuai Jiang, Huijun Zheng, Wenhui Yan, Tiantong Wang, Chong Wang, Ya Zhao, Hua Xie, Gang Li,* Xiucheng Zheng,* Hongjun Fan,* and Ling Jiang* Chin. Chem. Lett., in press. |
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140. | Photoelectron imaging spectroscopic signatures of CO activation by the heterotrinuclear titanium-nickel clusters Jianpeng Yang,* Jumei Zhang, Shihu Du, Gang Li, Jinghan Zou, Qiangshan Jing, Hua Xie,* and Ling Jiang* Chin. Chem. Lett., 2023, 34, 107702. |
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139. | Preparation and supercapacitive performance of CuFe2O4 hollow-spherical nanoparticles Yu Zhang, Qingguang Zhu, Yaqi Zhao, Xin Yang, and Ling Jiang* Chin. J. Chem. Phys., in press. |
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138. | Spectroscopic characterization of chain-to-ring structural evolution in platinum carbide clusters Yu Zhang,# Shihu Du,# Zhi Zhao, Haiyan Han, Gang Li, Jinghan Zou, Hua Xie,* and Ling Jiang* J. Energy Chem., 2023, 77, 529-534. |
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137. | Spectroscopic identification of the dinitrogen fixation and activation by metal carbide cluster anions PtCn– (n = 4-6) Shihu Du,# Xuegang Liu,# Bangmin Ju, Jumei Zhang, Jinghan Zou, Gang Li, Hongjun Fan, Hua Xie,* and Ling Jiang Inorg. Chem., 2023, 62, 170-177. |
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136. | Spectroscopic snapshot for neutral water nonamer (H2O)9: Adding a H2O onto a hydrogen bond-unbroken edge of (H2O)8 Huijun Zheng,# Yang-Yang Zhang,# Tiantong Wang, Shuai Jiang, Wenhui Yan, Chong Wang, Ya Zhao, Han-Shi Hu, Jiayue Yang, Weiqing Zhang, Guorong Wu, Dongxu Dai, Gang Li,* Jun Li,* Xueming Yang, and Ling Jiang* J. Chem. Phys., 2023, 158, 014301. |
| 2022 |
135. | Torsional tunneling splitting in water trimer Yu-Cheng Zhu, Shuo Yang, Jia-Xi Zeng, Wei Fang, Ling Jiang, Donghui Zhang,* and Xin-Zheng Li* J. Am. Chem. Soc., 2022, 144, 21356-21362. |
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134. | Silylium ion migration dominated hydroamidation of siloxy-alkynes Hengding Wang, Ling Jiang, and Hongjun Fan* Comms. Chem, 2022, 5, 133. |
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133. | Aerosol mass spectrometry of neutral species based on a tunable vacuum ultraviolet free electron laser Xiangyu Zang, Zhaoyan Zhang, Shukang Jiang, Yingqi Zhao, Tiantong Wang, Chong Wang, Gang Li, Hua Xie, Jiayue Yang, Guorong Wu, Weiqing Zhang, Jinian Shu, Hongjun Fan,* Xueming Yang, and Ling Jiang* Phys. Chem. Chem. Phys., 2022, 24, 16484-16492. |
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132. | Infrared spectroscopy of stepwise hydration motifs of sulfur dioxide Chong Wang,# Liangfei Fu,# Shuo Yang, Huijun Zheng, Tiantong Wang, Jiao Gao, Mingzhi Su, Jiayue Yang, Guorong Wu, Weiqing Zhang, Zhaojun Zhang,* Gang Li,* Dong H. Zhang, Ling Jiang,* and Xueming Yang J. Phys. Chem. Lett., 2022, 13, 5654-5659. |
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131. | Spectroscopic characterization of synergistic mechanism of ruthenium-lithium hydrides for dinitrogen cleavage Jumei Zhang, Gang Li, Jianping Guo, Hongjun Fan, Ping Chen, Ling Jiang,* and Hua Xie* J. Phys. Chem. Lett., 2022, 13, 3937-3941. |
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130. | Xuegang Liu, Gang Li, Zhiling Liu, Jinghan Zou, Dong Yang, Shihu Du, Wenshao Yang,* Ling Jiang,* and Hua Xie* J. Chem. Phys., 2022, 156, 164302. |
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129. | Vacuum ultraviolet free-electron laser photoionization mass spectrometry of alpha-pinene ozonolysis Xiangyu Zang,# Zhaoyan Zhang,# Chong Wang, Tiantong Wang, Huijun Zheng, Hua Xie, Jiayue Yang, Dongxu Dai, Guorong Wu, Weiqing Zhang, Gang Li,* Xueming Yang, and Ling Jiang* Chin. J. Chem. Phys., 2022, 35, 281-288. |
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128. | Ligand-induced tuning of the electronic structure of rhombus tetraboron cluster Ya Zhao,# Tiantong Wang,# Chong Wang,# Zhaoyan Zhang,# Huijun Zheng, Shuai Jiang, Gang Li,* Jiayue Yang, Xiucheng Zheng,* Hongjun Fan,* Ling Jiang,* Xueming Yang, and Mingfei Zhou* ChemPhysChem, 2022, 22, e202200060. |
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127. | Iridium dimer anion-mediated C≡C triple bond cleavage and successive dehydrogenation of acetylene in the gas phase Hechen Wu, Xiao-Nan Wu,* Xuegang Liu, Chonglei Ji, Wei Li, Ling Jiang, Hua Xie,* and Mingfei Zhou* J. Phys. Chem. A, 2022, 126, 1711-1717. |
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126. | Infrared spectroscopic signature of the structural diversity of the water heptamer Yang-Yang Zhang,# Chong Wang,# Gang Li,# Xiangyu Zang, Yong Yu, Han-Shi Hu, Jiayue Yang, Weiqing Zhang, Dongxu Dai, Guorong Wu, Ling Jiang,* Xueming Yang,* and Jun Li* Cell Rep. Phys. Sci., 2022, 3, 100748. |
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125. | Isoelectronic IrC3–, PtC3–, and AuC3+ clusters featuring the structural and bonding resemblance to OC3Xuegang Liu, Gang Li, Zhiling Liu,* Wenshao Yang, Hongjun Fan, Ling Jiang,* and Hua Xie* J. Phys. Chem. Lett., 2022, 13, 12-17. |
| 2021 |
124. | Ternary ruthenium complex hydrides for ammonia synthesis via the associative mechanism Qianru Wang,# Jaysree Pan,# Jianping Guo, Heine Anton Hansen, Hua Xie, Ling Jiang, Lei Hua, Haiyang Li, Yeqin Guan, Peikun Wang, Wenbo Gao, Lin Liu, Hujun Cao, Zhitao Xiong, Tejs Vegge,* and Ping Chen* Nat. Catal., 2021, 4, 959-967. |
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123. | In situ formed Co from Co-Mg-O solid solution synergizing with LiH for efficient ammonia synthesis Wenbo Gao, Sheng Feng, Hanxue Yan, Qianru Wang, Hua Xie, Ling Jiang, Weijin Zhang, Yeqin Guan, Han Wu, Hujun Cao, Jianping Guo,* and Ping Chen Chem. Commun., 2021, 57, 8576-8579. |
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122. | CO activation by the heterobinuclear transition metal-iron clusters: A photoelectron spectroscopic and theoretical study Jumei Zhang, Zhiling Liu, Gang Li, Hongjun Fan, Ling Jiang,* and Hua Xie* J. Energy Chem., 2021, 63, 8576–8579. |
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121. | Evolution of the linker in microhydrated hydrogen dinitrate anions: from H+ to H5O2+ Shaojun Gui, Ling Jiang,* and Zhi-Feng Liu* J. Comput. Chem., 2021, 42, 1514-1525. |
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120. | Understanding Fermi resonances in the complex vibrational spectra of the methyl groups in methylamines Qian-Rui Huang, Tomoya Endo, Saurabh Mishra, Bingbing Zhang, Li-Wei Chen, Asuka Fujii, Ling Jiang,* G. Naresh Patwari,* Yoshiyuki Matsuda,* and Jer-Lai Kuo* Phys. Chem. Chem. Phys., 2021, 23, 3739-3747. |
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119. | Infrared spectroscopy of neutral clusters based on a vacuum ultraviolet free electron laser Gang Li, Chong Wang, Hui-jun Zheng, Tian-tong Wang, Hua Xie, Xue-ming Yang, and Ling Jiang* Chin. J. Chem. Phys., 2021, 34, 51-60. (Invited Review for special topic of “the New Advanced Experimental Techniques on Chemical Physics”) |
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118. | Vibrational signature of dynamic coupling of a strong hydrogen bond Shukang Jiang,# Mingzhi Su,# Shuo Yang,# Chong Wang,# Qian-Rui Huang,# Gang Li, Hua Xie, Jiayue Yang, Guorong Wu, Weiqing Zhang, Zhaojun Zhang,* Jer-Lai Kuo,* Zhi-Feng Liu,* Dong H. Zhang, Xueming Yang, and Ling Jiang* J. Phys. Chem. Lett., 2021, 12, 2259-2265. |
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117. | Observation of carbon-carbon coupling reaction in neutral transition-metal carbonyls Chong Wang,# Qinming Li,# Xiangtao Kong,# Huijun Zheng, Tiantong Wang, Ya Zhao, Gang Li, Hua Xie, Jiayue Yang, Guorong Wu, Weiqing Zhang, Dongxu Dai, Mingfei Zhou,* Xueming Yang, and Ling Jiang* J. Phys. Chem. Lett., 2021, 12, 1012-1017. |
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116. | Huijun Zheng,# Xiangtao Kong,# Chong Wang, Tiantong Wang, Dong Yang, Gang Li, Hua Xie, Zhi Zhao,* Ruili Shi, Haiyan Han, Hongjun Fan,* Xueming Yang, and Ling Jiang* J. Phys. Chem. Lett., 2021, 12, 472-477. |
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115. | CO oxidation on the heterodinuclear tantalum-nickel monoxide carbonyl complex anions Jumei Zhang,# Ya Li,# Yan Bai, Gang Li, Dong Yang, Huijun Zheng, Jinghan Zou, Xiangtao Kong, Hongjun Fan, Zhiling Liu,* Ling Jiang,* and Hua Xie* Chin. Chem. Lett., 2021, 32, 854-860. |
| 2020 |
114. | Infrared spectroscopic study of hydrogen bonding topologies in the smallest ice cube Gang Li,# Yang-Yang Zhang,# Qinming Li,# Chong Wang, Yong Yu, Bingbing Zhang, Han-Shi Hu, Weiqing Zhang, Dongxu Dai, Guorong Wu, Dong H. Zhang, Jun Li,* Xueming Yang,* and Ling Jiang* Nat. Commun., 2020, 11, 5449. |
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113. | Infrared spectroscopy of neutral water clusters at finite temperature: Evidence for a noncyclic pentamer Bingbing Zhang,# Yong Yu,# Yang-Yang Zhang,# Shukang Jiang, Qinming Li, Han-Shi Hu, Gang Li, Zhi Zhao, Chong Wang, Hua Xie, Weiqing Zhang, Dongxu Dai, Guorong Wu, Dong H. Zhang, Ling Jiang,* Jun Li,* and Xueming Yang* Proc. Natl. Acad. Sci. U.S.A., 2020, 117, 15423-15428. |
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112. | Deconstructing vibrational motions on the potential energy surfaces of hydrogen-bonded complexes Bingbing Zhang,# Shuo Yang,# Qian-Rui Huang,# Shukang Jiang, Rongjun Chen, Xueming Yang, Dong H. Zhang, Zhaojun Zhang,* Jer-Lai Kuo,* and Ling Jiang* CCS Chem. 2020, 2, 829-835. |
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111. | Control of zeolite pore interior for chemoselective alkyne/olefin separations Yuchao Chai,# Xue Han,# Weiyao Li, Shanshan Liu, Sikai Yao, Chong Wang, Wei Shi, Ivan da-Silva, Pascal Manuel, Yongqiang Cheng, Luke D. Daemen, Anibal J. Ramirez-Cuesta, Chiu C. Tang, Ling Jiang, Sihai Yang,* Naijia Guan, Landong Li* Science, 2020, 368, 1002-1006. |
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110. | Infrared spectroscopy of CO2 transformation by group III metal monoxide cations Dong Yang,# Mingzhi Su,# Huijun Zheng, Zhi Zhao, Xiangtao Kong, Gang Li, Hua Xie, Weiqing Zhang, Hongjun Fan,* and Ling Jiang* Chin. J. Chem. Phys., 2020, 33, 160-166. |
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109. | Structures, energetics, and infrared spectra of the cationic monomethylamine-water clusters Shukang Jiang#, Dong Yang#, Xiangtao Kong#, Chong Wang, Xiangyu Zang, Huijun Zheng, Gang Li, Hua Xie, Weiqing Zhang, Xueming Yang, and Ling Jiang* Chin. J. Chem. Phys., 2020, 33, 31-36. |
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108. | Infrared + vacuum ultraviolet two-color ionization spectroscopy of neutral metal complexes based on a tunable vacuum ultraviolet free-electron laser Gang Li,# Chong Wang,# Qinming Li,# Huijun Zheng, Tiantong Wang, Yong Yu, Mingzhi Su, Dong Yang, Lei Shi, Jiayue Yang, Zhigang He, Hua Xie, Hongjun Fan, Weiqing Zhang, Dongxu Dai, Guorong Wu, Xueming Yang, and Ling Jiang* Rev. Sci. Instrum., 2020, 91, 034103. |
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107. | Infrared spectroscopy of neutral water dimer based on a tunable vacuum ultraviolet free electron laser Bingbing Zhang,# Yong Yu,# Zhaojun Zhang,# Yang-Yang Zhang,# Shukang Jiang, Qinming Li, Shuo Yang, Han-Shi Hu, Weiqing Zhang, Dongxu Dai, Guorong Wu, Jun Li,* Dong H. Zhang,* Xueming Yang,* and Ling Jiang* J. Phys. Chem. Lett., 2020, 11, 851-855. |
| 2019 |
106. | Infrared spectroscopy of hydrogen-bonding interactions in neutral dimethylamine-methanol complexes Shukang Jiang,# Xiangtao Kong,# Chong Wang,# Xiangyu Zang, Mingzhi Su, Huijun Zheng, Bingbing Zhang, Gang Li, Hua Xie, Xueming Yang, Zhiling Liu,* Zhi-Feng Liu,* and Ling Jiang* J. Phys. Chem. A, 2019, 123, 10109-10115. |
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105. | Probing solvation and reactivity in ionized polycyclic aromatic hydrocarbon–water clusters with photoionization mass spectrometry and electronic structure calculations Bo Xu,# Tamar Stein,# Utuq Ablikim, Ling Jiang, Josie Hendrix, Martin Head-Gordon, and Musahid Ahmed* Faraday Discussions, 2019, 217, 414–433. |
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104. | Electrospray ionization photoelectron spectroscopy of cryogenic [EDTA•M(II)]2− complexes (M = Ca, V−Zn): electronic structures and intrinsic redox properties Qinqin Yuan,# Xiang-Tao Kong,# Gao-Lei Hou, Ling Jiang,* and Xue-Bin Wang* Faraday Discussions, 2019, 217, 383–395. |
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103. | Structures and infrared spectra of [M(CO2)7]+ (M = V, Cr, and Mn) complexes Dong Yang,# Xiangtao Kong,# Huijun Zheng, Mingzhi Su, Zhi Zhao, Hua Xie, Hongjun Fan, Weiqing Zhang, and Ling Jiang* J. Phys. Chem. A 2019, 123, 3703–3708. |
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102. | Infrared photodissociation spectroscopic and theoretical study of [Co(CO2)n]+ clusters Dong Yang,# Mingzhi Su,# Huijun Zheng, Zhi Zhao, Gang Li, Xiangtao Kong, Hua Xie, Hongjun Fan, Weiqing Zhang, and Ling Jiang* Chin. J. Chem. Phys., 2019, 32, 223-228. |
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101. | Size-dependent formation of an ion pair in HSO4−(H2O)n: A molecular model for probing the microsolvation of acid dissociation Huiyan Li, Xiangtao Kong, Ling Jiang,* and Zhi-Feng Liu* J. Phys. Chem. Lett., 2019, 10, 2162–2169. |
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100. | Ligand-mediated reactivity in CO oxidation of niobium-nickel monoxide carbonyl complexes: The crucial roles of the multiple adsorption of CO molecules Jumei Zhang, Ya Li, Zhiling Liu,* Gang Li, Hongjun Fan, Ling Jiang,* and Hua Xie* J. Phys. Chem. Lett., 2019, 10, 1566-1573. |
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99. | Infrared spectra of neutral dimethylamine clusters: An infrared-vacuum ultraviolet spectroscopic and anharmonic vibrational calculation study Bingbing Zhang,# Qian-Rui Huang,# Shukang Jiang, Li-Wei Chen, Po-Jen Hsu, Chong Wang, Ce Hao, Xiangtao Kong, Dongxu Dai, Xueming Yang, Jer-Lai Kuo,* and Ling Jiang* J. Chem. Phys., 2019, 150, 064317. |
| 2018 |
98. | Geometric structures and magnetic interactions in small chromium oxide clusters Le Nhan Pham, Pieterjan Claes, Peter Lievens, Ling Jiang, Torsten Wende, Knut R. Asmis, Minh Tho Nguyen,* and Ewald Janssens* J. Phys. Chem. C 2018, 122, 27640-27647. |
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97. | Infrared photodissociation spectroscopy of ion-radical networks in cationic dimethylamine complexes Xin Lei,# Xiangtao Kong,# Zhi Zhao, Bingbing Zhang, Dongxu Dai, Xueming Yang, and Ling Jiang* Phys. Chem. Chem. Phys. 2018, 20, 30125-30132. (Featured on Front Cover) |
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96. | Solvation effects on the N−O and O−H stretching modes in hydrated NO3−(H2O)n clusters Huiyan Li, Xiangtao Kong, Ling Jiang,* and Zhi-Feng Liu* Phys. Chem. Chem. Phys. 2018, 20, 26918-26925. |
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95. | Temperature-dependent infrared photodissociation spectroscopy of (CO2)3+ cation Xin Lei,# Xiangtao Kong,# Bingbing Zhang, Zhi Zhao, Dongxu Dai, Xueming Yang, and Ling Jiang* J. Phys. Chem. A 2018, 122, 8054-8057. |
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94. | Photoelectron velocity map imaging spectroscopic and theoretical study of heteronuclear vanadium-nickel carbonyl anions VNi(CO)n- (n = 2-6) Qinqin Yuan, Jumei Zhang, Jinghan Zou, Hongjun Fan, Ling Jiang,* and Hua Xie* J. Chem. Phys. 2018, 149, 144305. |
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93. | Magnetic-bottle and velocity-map imaging photoelectron spectroscopy of APS− (A = C14H10 or anthracene): electron structure, spin-orbit coupling of APS•, and dipole-bound state of APS− Qinqin Yuan, Zheng Yang, Renzhong Li, Wesley J. Transue, Zhipeng Li, Ling Jiang, Niranjan Govind, Christopher C. Cummins,* and Xue-Bin Wang* Chin. J. Chem. Phys. 2018, 31, 463-470. |
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92. | Infrared photodissociation spectroscopy of cold cationic trimethylamine complexes Xin Lei, Xiangtao Kong, Zhi Zhao, Bingbing Zhang, Dongxu Dai, Xueming Yang, and Ling Jiang* Phys. Chem. Chem. Phys. 2018, 20, 25583-25591. (Featured on Back Cover) |
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91. | Photoelectron spectroscopic and computational studies of [EDTA•M(III)]- complexes (M = H3, Al, Sc, V-Co) Qinqin Yuan,# Xiang-Tao Kong,# Gao-Lei Hou, Ling Jiang,* and Xue-Bin Wang* Phys. Chem. Chem. Phys. 2018, 20, 19458-19469. |
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90. | Coordination-induced CO2 fixation into carbonate by metal oxides Zhi Zhao,# Xiangtao Kong,# Qinqin Yuan,# Hua Xie, Dong Yang, Jijun Zhao, Hongjun Fan,* and Ling Jiang* Phys. Chem. Chem. Phys. 2018, 20, 19314-19320. (Featured on Back Cover) |
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89. | Solvation effects on the vibrational modes in hydrated bicarbonate clusters Xiangtao Kong,# Shou-Tian Sun,# Ling Jiang,* and Zhi-Feng Liu* Phys. Chem. Chem. Phys. 2018, 20, 4571-4578. |
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88. | Ligand-enhanced CO activation by the early lanthanide-nickel heterodimers: Photoelectron velocity-map imaging spectroscopy of LnNi(CO)n- (Ln = La, Ce) Gang Li,# Jumei Zhang,# Hua Xie, Xiangtao Kong, and Ling Jiang* J. Phys. Chem. A 2018, 122, 3811-3818. |
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87. | Photoelectron velocity-map imaging and theoretical studies of heterotrinuclear metal carbonyls V2Ni(CO)n- (n = 6-10) Jumei Zhang, Hua Xie, Gang Li, Xiangtao Kong, Qinqin Yuan, Jinghan Zou, Hongjun Fan, and Ling Jiang* J. Phys. Chem. A 2018, 122, 53-59. |
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86. | Photoelectron velocity map imaging spectroscopy of heteronuclear metal-nickel carbonyls MNi(CO)n– (M = Sc, Y; n = 2-6) Hua Xie, Jinghan Zou, Qinqin Yuan, Jumei Zhang, Hongjun Fan, and Ling Jiang* Topics in Catalysis, 2018, 61, 71-80. (Invited article for special issue “Size-Selected Clusters as Model Systems for Catalysis”) |
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85. | On the solvation of hydronium by carbon dioxide: Structural and infrared spectroscopic study of (H3O+)(CO2)n Jianpeng Yang,* Xiangtao Kong, and Ling Jiang* Chem. Phys. 2018, 501, 1-7. |
| 2017 |
84. | Infrared-vacuum ultraviolet spectroscopic and theoretical study of neutral trimethylamine dimer Bingbing Zhang,# Xiangtao Kong,# Shukang Jiang, Zhi Zhao, Hua Xie, Ce Hao, Dongxu Dai, Xueming Yang, and Ling Jiang* Chin. J. Chem. Phys. 2017, 30, 691-695. |
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83. | Infrared-vacuum ultraviolet spectroscopic and theoretical study of neutral methylamine dimer Bingbing Zhang,# Xiangtao Kong,# Shukang Jiang, Zhi Zhao, Dong Yang, Hua Xie, Ce Hao, Dongxu Dai, Xueming Yang, Zhi-Feng Liu,* and Ling Jiang* J. Phys. Chem. A 2017, 121, 7176-7182. (Invited article for special issue “W. Lester S. Andrews Festschrift”.) |
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82. | Peikun Wang,# Hua Xie,# Jianping Guo, Zhi Zhao, Xiangtao Kong, Wenbo Gao, Fei Chang, Teng He, Guotao Wu, Mingshu Chen, Ling Jiang,* and Ping Chen* Angew. Chem., Int. Ed. 2017, 56, 8716-8720. (Hot Paper) |
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81. | Reactions of copper and silver cations with carbon dioxide: an infrared photodissociation spectroscopic and theoretical study Zhi Zhao,# Xiangtao Kong,# Dong Yang, Qinqin Yuan, Hua Xie, Hongjun Fan, Jijun Zhao, and Ling Jiang* J. Phys. Chem. A 2017, 121, 3220-3226. |
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80. | Probing the bonding of CO to heteronuclear group 4 metal-nickel clusters by photoelectron spectroscopy Jinghan Zou,# Hua Xie,# Qinqin Yuan, Jumei Zhang, Dongxu Dai, Hongjun Fan, Zichao Tang, and Ling Jiang* Phys. Chem. Chem. Phys. 2017, 19, 9790-9797. (Hot articles) |
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| 2016 |
79. | Sequential bonding of CO molecules to a titanium dimer: A photoelectron velocity-map imaging spectroscopic and theoretical study of Ti2(CO)n- (n = 1-9) Jinghan Zou, Hua Xie, Dongxu Dai, Zichao Tang, and Ling Jiang* J. Chem. Phys. 2016, 145, 184302. (Featured on Cover) |
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78. | Photoelectron velocity-map imaging and theoretical studies of heteronuclear metal carbonyls MNi(CO)3- (M = Mg, Ca, Al) Hua Xie,#,* Jinghan Zou,# Qinqin Yuan, Hongjun Fan, Zichao Tang*, and Ling Jiang* J. Chem. Phys. 2016, 144, 124303. |
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77. | Observing the transition from equatorial to axial CO chemisorption: infrared photodissociation spectroscopy of yttrium oxide-carbonyls Hua Xie,# Zhiling Liu,# Zhi Zhao, Xiangtao Kong, Hongjun Fan, Zichao Tang*, and Ling Jiang* Inorg. Chem. 2016, 55, 5502-5506. |
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76. | Structural and infrared spectroscopic study on solvation of acetylene by protonated water molecules Xiang-Tao Kong, Xin Lei, Qin-Qin Yuan, Bing-Bing Zhang, Zhi Zhao, Dong Yang, Shu-Kang Jiang, Dong-Xu Dai, and Ling Jiang* Chin. J. Chem. Phys. 2016, 29, 31-37. |
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75. | Probing the microhydration of metal carbonyls: a photoelectron velocity-map imaging spectroscopic and theoretical study of Ni(CO)3(H2O)n- Hua Xie, Jinghan Zou, Xiangtao Kong, Weiqing Zhang, Musahid Ahmed, and Ling Jiang* Phys. Chem. Chem. Phys. 2016, 18, 26719-26724. |
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74. | Probing the early stages of solvation of cis-Pinate dianions by water, acetonitrile, and methanol: a photoelectron spectroscopy and theoretical study Gao-Lei Hou,# Xiang-Tao Kong,# Marat Valiev, Ling Jiang*, and Xue-Bin Wang* Phys. Chem. Chem. Phys. 2016, 18, 3628-3637. |
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73. | Probing the microsolvation of a quaternary ion complex: gas phase vibrational spectroscopy of (NaSO4-)2(H2O)n=0-6, 8 Torsten Wende, Nadja Heine, Tara I. Yacovitch, Knut R. Asmis*, Daniel M. Neumark*, and Ling Jiang* Phys. Chem. Chem. Phys. 2016, 18, 267-277. |
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| 2015 |
72. | Early Stage Solvation of Protonated Methanol by Carbon Dioxide Zhi Zhao, Xiang-Tao Kong, Xin Lei, Bing-Bing Zhang, Ji-Jun Zhao, Ling Jiang* Chin. J. Chem. Phys. 2015, 28, 501-508. |
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71. | Microhydrated Dihydrogen Phosphate Clusters Probed by Gas Phase Vibrational Spectroscopy and First Principles Calculations Shou-Tian Sun, Ling Jiang*, J. W. Liu, Nadja Heine, Tara I. Yacovitch, Torsten Wende, Knut R. Asmis*, Daniel M. Neumark*, and Zhi-Feng Liu* Phys. Chem. Chem. Phys. 2015, 17, 25714-25724. (Featured on Back Cover) |
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70. | Interaction of metal ions with the His13-His14 sequence relevant to Alzheimer’s disease Xiangtao Kong, Zhi Zhao, Xin Lei, Bingbing Zhang, Dongxu Dai, and Ling Jiang* J. Phys. Chem. A 2015, 119, 3528-3534. |
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| 2014 |
69. | Infrared Signature of the Early Stage Microsolvation in the NaSO4−(H2O)1−5 Clusters: A Simulation Study Tan Jin, BingBing Zhang, Jian Song, Ling Jiang*, Yishen Qiu*, and Wei Zhuang* J. Phys. Chem. A 2014, 118, 9157-9162. |
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68. | Photoelectron Imaging and Theoretical Study on Nascent Hydrogen Bond Network in Microsolvated Clusters of Au–(CH3OH)n (n = 1–5) Zhengbo Qin, Ran Cong, Hua Xie, Zhiling Liu, Xia Wu, Zichao Tang*, Ling Jiang*, and Hongjun Fan* J. Phys. Chem. A 2014, 118, 3402-3409. |
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67. | Ion Pairing Kinetics Does not Necessarily Follow the Eigen-Tamm Mechanism Qiang Zhang, Bing-Bing Zhang, Ling Jiang*, and Wei Zhuang* Chin. J. Chem. Phys. 2014, 26, 694-700. |
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66. | Large amplitude motion in cold monohydrated dihydrogen phosphate anion H2PO4-(H2O): Infrared photodissociation spectroscopy combined with ab initio molecular dynamics simulations Ling Jiang, Shou-Tian Sun, Nadja Heine, Jian-Wen Liu, Tara I. Yacovitch, Torsten Wende, Zhi-Feng Liu*, Daniel M. Neumark*, and Knut R. Asmis* Phys. Chem. Chem. Phys. 2014, 16, 1314-1318. |
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| 2013 |
65. | Solvent-mediated folding in dicarboxylate dianions: aliphatic chain length dependence and origin of the IR intensity quenching Marius Wanko, Torsten Wende, Marta Montes Saralegui, Ling Jiang, Angel Rubio*, and Knut R. Asmis* Phys. Chem. Chem. Phys. 2013, 15, 20463-20472. |
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64. | Photoelectron Velocity-Map Imaging Spectroscopic and Theoretical Study on the Reactivity of the Gold Atom toward CH3SH, CH3OH, and H2O Zhengbo Qin, Ran Cong, Xia Wu, Zhiling Liu, Hua Xie, Zichao Tang*, Ling Jiang*, and Hongjun Fan* J. Chem. Phys. 2013, 139, 034315. |
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63. | Structure and chemistry of the heteronuclear oxo-cluster [VPO4]•+: A model system for the gas-phase oxidation of small hydrocarbons Nicolas Dietl, Torsten Wende, Kai Chen, Ling Jiang, Maria Schlangen*, Xinhao Zhang, Knut R. Asmis*, and Helmut Schwarz* J. Am. Chem. Soc. 2013, 135, 3711-3721. |
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| 2012 |
62. | Mid- and Far-IR Spectra of H5+ and D5+ Compared to the Predictions of Anharmonic Theory Timothy C. Cheng, Ling Jiang, Knut R. Asmis, Yimin Wang, Joel M. Bowman, Allen M. Ricks, and Michael A. Duncan* J. Phys. Chem. Lett. 2012, 3, 3160-3166. |
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61. | Photoelectron Velocity-Map Imaging Signature of Structural Evolution of Silver-Doped Lead Zintl Anions Hua Xie, Zhengbo Qin, Xia Wu, Zichao Tang*, and Ling Jiang* J. Chem. Phys. 2012, 137, 064318. |
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| 2011 |
60. | Electron Distribution in Partially Reduced Mixed Metal Oxide Systems: Infrared Spectroscopy of CemVnOo+ Gas Phase Clusters Ling Jiang, Torsten Wende, Pieterjan Claes, Soumen Bhattacharyy, Marek Sierka, Gerard Meijer, Peter Lievens*, Joachim Sauer*, and Knut R. Asmis* J. Phys. Chem. A 2011, 115, 11187-11192. |
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59. | Structures and Vibrational Spectroscopy of Partially Reduced Gas-Phase Cerium Oxide Clusters Asbjörn M. Burow, Torsten Wende, Marek Sierka*, Radosław Włodarczyk, Joachim Sauer, Pieterjan Claes, Ling Jiang, Gerard Meijer, Peter Lievens, and Knut R. Asmis* Phys. Chem. Chem. Phys. 2011, 13, 19393-19400. |
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58. | Infrared Spectroscopy of Hydrated Bisulfate Anion Clusters: HSO4- (H2O)1-16 Tara I. Yacovitch, Torsten Wende, Ling Jiang, Nadja Heine, Gerard Meijer, Daniel M. Neumark*, and Knut R. Asmis* J. Phys. Chem. Lett. 2011, 2, 2135-2140. |
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57. | Infrared Spectra and Structures of Silver-PAH Cation Complexes Marco Savoca, Torsten Wende, Ling Jiang, Judith Langer, Gerard Meijer, Otto Dopfer*, and Knut R. Asmis* J. Phys. Chem. Lett. 2011, 2, 2052-2056. |
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56. | Spectroscopically probing solvent-mediated folding in dicarboxylate dianions Torsten Wende, Marius Wanko, Ling Jiang, Gerard Meijer, Knut R. Asmis*, and Angel Rubio* Angew. Chem., Int. Ed. 2011, 50, 3807-3810. |
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| 2010 |
55. | Infrared Spectroscopic Characterization of the Oxidative Dehydrogenation of Propane by V4O10+ Torsten Wende, Jens Döbler, Ling Jiang, Pieterjan Claes, Ewald Janssens, Peter Lievens, Gerard Meijer, Knut R. Asmis*, and Joachim Sauer* Int. J. Mass Spectrom. 2010, 297, 102-106. |
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54. | IR Spectroscopic Characterization of the Thermally Induced Isomerization in Carbon Disulfide Dimer Anions Daniel J. Goebbert, Torsten Wende, Ling Jiang, Gerard Meijer, Andrei Sanov*, and Knut R. Asmis* J. Phys. Chem. Lett. 2010, 1, 2465-2469. |
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53. | Gas-phase vibrational spectroscopy of microhydrated magnesium nitrate ions [MgNO3(H2O)1-4]+ Ling Jiang, Torsten Wende, Risshu Bergmann, Gerard Meijer, and Knut R. Asmis* J. Am. Chem. Soc. 2010, 132, 7398-7404. |
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52. | Reactions of Laser-Ablated Nb and Ta Atoms with N2: Experimental and Theoretical Study of M(NN)x (M = Nb, Ta; x = 1-4) in Solid Neon Zhang-Hui Lu, Ling Jiang, and Qiang Xu* J. Phys. Chem. A 2010, 114, 6837-6842. |
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51. | Reactions of Molybdenum and Tungsten Atoms with Nitrous Oxide in Excess Argon: A Combined Matrix Infrared Spectroscopic and Theoretical Study Ling Jiang and Qiang Xu* J. Chem. Phys. 2010, 132, 164305-1-6. |
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50. | Reactions of Ruthenium and Rhodium atoms with Carbon Monoxide and Dinitrogen Mixtures: A Combined Experimental and Theoretical Study Ling Jiang, Zhang-Hui Lu, and Qiang Xu* J. Chem. Phys. 2010, 132, 054504-1-8. |
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49. | A Combined Experimental and Theoretical Study of Iron Dinitrogen Complexes: Fe(N2), Fe(NN)x (x = 1-5), and Fe(NN)3- Zhang-Hui Lu, Ling Jiang, and Qiang Xu* J. Phys. Chem. A 2010, 114, 2157-2163. |
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| 2009 |
48. | Infrared Spectra and Density Functional Theory Calculations of the Tantalum and Niobium Carbonyl Dinitrogen Complexes Zhang-Hui Lu, Ling Jiang, and Qiang Xu* J. Chem. Phys. 2009, 131, 034512-1-7. |
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47. | Reactions of Rhodium and Ruthenium Atoms with Nitrous Oxide: A Combined Matrix Infrared Spectroscopic and Theoretical Study Ling Jiang and Qiang Xu* J. Phys. Chem. A 2009, 113, 5620-5624. |
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46. | Matrix Infrared Spectroscopic and Theoretical Studies on the Reactions of Late Lanthanoid Atoms with Nitrous Oxide in Excess Argon Ling Jiang and Qiang Xu* J. Phys. Chem. A 2009, 113, 3121-3126. |
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| 2008 |
45. | Reactions of Gold Atoms with Nitrous Oxide in Excess Argon: A Matrix Infrared Spectroscopic and Theoretical Study Ling Jiang, Masanori Kohyama, Masatake Haruta, and Qiang Xu* J. Phys. Chem. A 2008, 112, 13495-13499. |
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44. | Density Functional Theory Study of the Interaction of Carbon Monoxide with the Second-Row Transition Metal Dimers Ling Jiang and Qiang Xu* Chem. Phys. 2008, 354, 32-37. |
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43. | Matrix Infrared Spectroscopic and Theoretical Studies on the Reactions of Early Lanthanoid Atoms with Nitrous Oxide in Excess Argon Ling Jiang and Qiang Xu* J. Phys. Chem. A 2008, 112, 8690-8696. |
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42. | Infrared Spectroscopic and Density Functional Theory Studies on the Reactions of Yttrium and Lanthanum Atoms with Nitrous Oxide in Excess Argon Ling Jiang and Qiang Xu* J. Phys. Chem. A 2008, 112, 6289-6294. |
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41. | Unique Structural Trends in the Lanthanoid Oxocarbonyl Complexes Ling Jiang, Xin-Bo Zhang, Song Han, and Qiang Xu* Inorg. Chem. 2008, 47, 4826-4831. |
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40. | CO Activation on the Late Lanthanide Dimers: Matrix Infrared Spectra of the Ln2[h2(m2-C, O)]x (Ln = Tb, Dy, Ho, Er, Lu; x = 1, 2) Molecules Ling Jiang, Xi Jin, Mingfei Zhou*, and Qiang Xu* J. Phys. Chem. A 2008, 112, 3627-3630. |
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39. | Theoretical Study of the Interaction of Carbon Monoxide with 3d Metal Dimers Ling Jiang and Qiang Xu* J. Chem. Phys. 2008, 128, 124317-1-9. |
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| 2007 |
38. | Matrix-Isolation Infrared Spectroscopic and Density Functional Theory Studies on Reactions of Laser-Ablated Lead and Tin Atoms with Water Molecules Yun-Lei Teng, Ling Jiang, Song Han, and Qiang Xu* Bull. Chem. Soc. Jpn. 2007, 80, 2149-2156. |
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37. | Infrared Spectroscopic and Density Functional Theory Study on the Reactions of Rhodium and Cobalt Atoms with Carbon Dioxide in Rare-Gas Matrixes Ling Jiang, Yun-Lei Teng, and Qiang Xu* J. Phys. Chem. A 2007, 111, 7793-7799. |
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36. | Matrix-Isolation Infrared Spectroscopic and Theoretical Studies on Reactions of Laser-Ablated Germanium Atoms with Water Molecules Yun-Lei Teng, Ling Jiang, Song Han, and Qiang Xu* J. Phys. Chem. A 2007, 111, 6225-6231. |
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35. | Infrared Spectroscopic and Density Functional Theory Study on the Reactions of Lanthanum Atoms with Carbon Dioxide in Rare-Gas Matrices Ling Jiang and Qiang Xu* J. Phys. Chem. A 2007, 111, 3519-3525. |
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34. | Reactions of Laser-Ablated La and Y Atoms with CO: Matrix Infrared Spectra and DFT Calculations of the M(CO)x and MCO+ (M = La, Y; x = 1-4) Molecules Ling Jiang and Qiang Xu* J. Phys. Chem. A 2007, 111, 3271-3277. |
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33. | Carbonyldinitrosyltris(fluorosulfato)tungstate(II) and -Molybdate(II) Anions: Synthesis, Spectroscopy, and Density Functional Theory Calculations Qiang Xu*, Nobuko Tsumori, Ling Jiang, Masanobu Kondo, and Ryuichi Arakawa Chem. Asian J. 2007, 2, 599-608. |
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32. | Infrared Spectroscopic and Theoretical Studies on the Reactions of Copper Atoms with Carbon Monoxide and Nitric Oxide Molecules in Rare-Gas Matrices Ling Jiang and Qiang Xu* J. Phys. Chem. A 2007, 111, 2690-2696. |
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31. | Existence of the Na-Hd----Hd+-O Dihydrogen Bond in the Hydrogenation Process by Na2O: A First-Principles Identification Xin-Bo Zhang, Si-Qi Shi, Ling Jiang, Song Han, Yukinari Kotani, Tetsu Kiyobayashi, Nobuhiro Kuriyama, Tetsuhiko Kobayashi, and Qiang Xu* J. Phys. Chem. C 2007, 111, 5064-5068. |
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| 2006 |
30. | Reactions of Gadolinium Atoms and Dimers with CO: Formation of Gadolinium Carbonyls and Photoconversion to CO Activated Molecules Xi Jin, Ling Jiang, Qiang Xu*, and Mingfei Zhou* J. Phys. Chem. A 2006, 110, 12585-12591. |
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29. | Infrared Spectra of the (AgCO)2 and AgnCO (n = 2-4) Molecules in Rare-Gas Matrices Ling Jiang and Qiang Xu* J. Phys. Chem. A 2006, 110, 11488-11493. |
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28. | Infrared Spectra of the M(NO)n (M = Sn, Pb; n = 1, 2) and PbNO- Molecules Qiang Xu* and Ling Jiang Inorg. Chem. 2006, 45, 8648-8654. |
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27. | Tuning the Formation of Cadmium(II) Urocanate Frameworks by Control of Reaction Conditions: Crystal Structure, Properties, and Theoretical Investigation Ru-Qiang Zou, Rui-Qin Zhong, Ling Jiang, Yusuke Yamada, Nobuhiro Kuriyama, and Qiang Xu* Chem. Asian J. 2006, 1, 536-543. |
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26. | Infrared Spectroscopic and Density Functional Theory Studies on the Reactions of Zinc and Cadmium Atoms with Ammonia Ling Jiang and Qiang Xu* Bull. Chem. Soc. Jpn. 2006, 79, 1519-1524. |
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25. | Reactions of the Small Tin Clusters with Carbon Monoxide: Infrared Spectra and DFT Calculations of the SnnCO (n = 2-5) and Sn2(CO)2 Molecules in Solid Argon Ling Jiang and Qiang Xu* Bull. Chem. Soc. Jpn. 2006, 79, 857-863. |
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24. | Reactions of Laser-Ablated Zinc and Cadmium Atoms with CO: Infrared Spectra of the Zn(CO)x (x = 1-3), CdCO-, and Cd(CO)2 Molecules in Solid Neon Ling Jiang, Yun-Lei Teng, and Qiang Xu* J. Phys. Chem. A 2006, 110, 7092-7096. |
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23. | Infrared Spectroscopic and Density Functional Theory Studies on the CO Dissociation by Scandium and Yttrium Dimers Ling Jiang and Qiang Xu* J. Phys. Chem. A 2006, 110, 5636-5641. |
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22. | Infrared-Spectroscopic and Density-Functional-Theory Investigations of the LaCO, La2[h2(m2-C,O)], and c-La2(m-C)(m-O) Molecules in Solid Argon Qiang Xu*, Ling Jiang, and Ru-Qiang Zou Chem. Eur. J. 2006, 12, 3226-3232. |
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21. | Oxidation of Carbon Monoxide on Group 11 Metal Atoms: Matrix-Isolation Infrared Spectroscopic and Density Functional Theory Study Qiang Xu* and Ling Jiang J. Phys. Chem. A 2006, 110, 2655-2662. |
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| 2005 |
20. | Infrared Spectroscopic and Density Functional Theory Studies on the Reactions of Cadmium Atoms with Carbon Monoxide in Solid Argon Ling Jiang and Qiang Xu* J. Phys. Chem. A 2005, 109, 9001-9005. |
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19. | cyclo-Ti3[h2(m2-C,O)]3: A side-on-Bonded polycarbonyl titanium cluster with potentially antiaromatic character Qiang Xu*, Ling Jiang, and Nobuko Tsumori Angew. Chem., Int. Ed. 2005, 44, 4338-4342. |
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18. | Cluster and Periodic DFT Calculations: The Adsorption of Atomic Nitrogen on M(111) (M = Cu, Ag, Au) Surfaces Gui-Chang Wang*, Ling Jiang, Xian-Yong Pang, and Junji Nakamura In Progress in Surface Science Research, Edited by Nadya Columbus, Nova Science Publishers, Inc., 2004. J. Phys. Chem. B 2005, 109, 17943-17950. |
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17. | Experimental and theoretical evidence for the formation of zinc tricarbonyl in solid argon Ling Jiang and Qiang Xu* J. Am. Chem. Soc. 2005, 127, 8906-8907. [Additions and Corrections: J. Am. Chem. Soc. 2006, 128, 1394-1394.] |
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16. | Aerodynamic Levitation Apparatus for Structure Study of High Temperature Materials Coupled with Debye-Scherrer Camera at BL19B2 of SPring-8 Ichiro Sakai*, Kensuke Murai, Ling Jiang, Norimasa Umesaki, Tetsuo Honma, and Akiko Kitano Proceeding of The Fourteenth International Conference on Vacuum Ultraviolet Radiation Physics (VUV-XIV), July 19-23, 2004, in Cairns (Australia). J. Electron Spectrosc. Relat. Phenom. 2005, 144-147, 1011-1013. |
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15. | Rational Assembly of a 3D Metal-Organic Framework for Gas Adsorption with Predesigned Cubic Building Blocks and 1D Open Channels Ru-Qiang Zou, Ling Jiang, Hiroshi Senoh, Nobuhiko Takeichi, and Qiang Xu* Chem. Commun. 2005, 3526-3528. |
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14. | Reactions of Germanium Atoms and Small Clusters with CO: Experimental and Theoretical Characterization of GenCO (n = 1-5) and Ge2(CO)2 in Solid Argon Mingfei Zhou*, Ling Jiang, and Qiang Xu* J. Phys. Chem. A 2005, 109, 3325-3330. |
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13. | Reactions of Gold Atoms and Small Clusters with CO: Infrared Spectroscopic and Theoretical Characterization of AunCO (n = 1-5) and Aun(CO)2 (n = 1, 2) in Solid Argon Ling Jiang and Qiang Xu* J. Phys. Chem. A 2005, 109, 1026-1032. |
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12. | Observation of the Lead Carbonyls, PbnCO (n = 1-4): Reactions of Lead Atoms and Small Clusters with Carbon Monoxide in Solid Argon Ling Jiang and Qiang Xu* J. Chem. Phys. 2005, 122, 034505-1-6. |
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11. | Observation of anomalous C-O bond weakening on discandium and activation process to CO dissociation Ling Jiang and Qiang Xu* J. Am. Chem. Soc. 2005, 127, 42-43. |
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| 2002-2004 |
10. | Reactions of Silicon Atoms and Small Clusters with CO: Experimental and Theoretical Characterization of SinCO (n = 1-5), Si2(CO)2, c-Si2(m-O)(m-CSi), and c-Si2(m-O)(m-CCO) in Solid Argon Mingfei Zhou*, Ling Jiang, and Qiang Xu* J. Chem. Phys. 2004, 121, 10474-10482. |
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9. | Reactions of Silicon Atoms with NO. Experimental and Theoretical Characterization of Molecules Containing Si, N, and O Mingfei Zhou*, Ling Jiang, and Qiang Xu* J. Phys. Chem. A 2004, 108, 9521-9526. |
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8. | C-C Double- and Triple-Bond Formation from Reactions of B Atoms with CO: Experimental and Theoretical Characterization of OBBCCO and OBCCBO Molecules in Solid Argon Mingfei Zhou*, Ling Jiang, and Qiang Xu* Chem. Eur. J. 2004, 10, 5817-5822. |
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7. | Promotion of the Water-Gas Shift Reaction by Pre-adsorbed Oxygen on Cu(hkl) Surfaces: A Theoretical Study Ling Jiang, Gui-Chang Wang*, Zun-Sheng Cai, Yin-Ming Pan, and Xue-Zhuang Zhao J. Mol. Struc. (THEOCHEM) 2004, 710, 97-104. |
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6. | Cluster and Periodic DFT Calculations of Adsorption and Activation of CO2 on the Cu(hkl) Surfaces Gui-Chang Wang*, Ling Jiang, Yoshitada Morikawa, Junji Nakamura, Zun-Sheng Cai, Yin-Ming Pan, and Xue-Zhuang Zhao Surf. Sci. 2004, 570, 205-217. |
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5. | A Theoretical Study of Surface-Structural Sensitivity of the Reverse Water-Gas Shift Reaction over Cu(hkl) Surfaces Gui-Chang Wang*, Ling Jiang, Xian-Yong Pang, Zun-Sheng Cai, Yin-Ming Pan, Xue-Zhuang Zhao, Yoshitada Morikawa, and Junji Nakamura Surf. Sci. 2003, 543, 118-130. |
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4. | Investigation of the Kinetic Properties for the Forward and Reverse WGS Reaction by Energetic Analysis Guichang Wang*, Ling Jiang, Yuhua Zhou, Zunsheng Cai, Yinming Pan, Xuezhuang Zhao, Yongwang Li, Yuhan Sun, Bing Zhong, Xianyong Pang, Wei Huang, and Kechang Xie J. Mol. Struc. (THEOCHEM) 2003, 634, 23-30. |
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3. | The First Observation of Nitrogen-Carbonyl Bonding: Self-Assembly of N-oxalyl 2,4-dinitroanilide Assisted by a Weak N∙∙∙O=C Interaction Zhenming Yin, Ling Jiang, Jiaqi He, and Jin-Pei Cheng* Chem. Commun. 2003, 18, 2326-2327. |
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2. | Surface Structure Sensitivity of the Water-Gas Shift Reaction on Cu(hkl) Surfaces: A Theoretical Study Guichang Wang*, Ling Jiang, Zunsheng Cai, Yinming Pan, Xuezhuang Zhao, Wei Huang, Kechang Xie, Yongwang Li, Yuhan Sun, and Bing Zhong J. Phys. Chem. B 2003, 107, 557-562. |
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1. | Interaction of the Atoms (H, S, O, C) with the Cu(111) Surface Guichang Wang*, Ling Jiang, Zunsheng Cai, Yinming Pan, Naijia Guan, Yang Wu, Xuezhuang Zhao,* Yongwang Li, Yuhan Sun, and Bing Zhong J. Mol. Struc. (THEOCHEM) 2002, 589-590, 371-378. |
Collaboration
(1) Prof. Jijun Zhao: Dalian University of Technology, China
(2) Prof. Xiucheng Zheng: Zhengzhou University, China
(3) Prof. Zhifeng Liu: Chinese University of Hong Kong
(4) Prof. Knut R. Asmis: University of Leipzig, Germany
(5) Prof. Mark A Johnson: Yale University, USA
(6) Prof. Daniel M. Neumark: University of California, Berkeley, USA
(7) Prof. Musahid Ahmed: Lawrence Berkeley National Laboratory, Berkeley, USA
(8) Prof. Xue-Bin Wang: Pacific Northwest National Laboratory, USA
Students
已指导学生
袁勤勤 博士研究生 070304-物理化学
张菊梅 博士研究生 070304-物理化学
王恒定 博士研究生 070304-物理化学
现指导学生
苏明智 博士研究生 070304-物理化学
赵祥云 博士研究生 070203-原子与分子物理
王冲 博士研究生 070304-物理化学
郑会俊 博士研究生 070203-原子与分子物理
赵英岐 硕士研究生 070203-原子与分子物理
王天通 博士研究生 070203-原子与分子物理
张兆燕 博士研究生 070304-物理化学
鞠邦珉 硕士研究生 070304-物理化学
黎尚东 硕士研究生 070304-物理化学