基本信息
袁大强  男  博导  中国科学院福建物质结构研究所
电子邮件: ydq@fjirsm.ac.cn
通信地址: 福建省福州市鼓楼区杨桥西路155号
邮政编码: 350002

研究领域

超分子化学
多孔材料化学
能源相关气体存储与分离

招生信息

本课题组正在招聘工作人员(助理研究员、研究实习员、博士后)、研究生(含联培),热忱欢迎有志于科研事业的青年加盟我组。

招生专业
070304-物理化学
070301-无机化学
招生方向
多孔材料化学,超分子化学
异相催化
气体储存与分离

教育背景

2003-09--2006-07   中国科学院研究生院 中国科学院福建物质结构研究所   研究生 博士
1999-09--2002-07   北京师范大学化学系   研究生 硕士
1995-09--1999-07   北京师范大学化学系   本科 学士

工作经历

   
工作简历
2008-08~2011-07,美国德州农工大学化学系, 博士后研究员
2007-08~2008-07,美国迈阿密大学化学与生物化学系, 博士后研究员
2005-08~2007-07,中国科学院福建物质结果研究所, 助理研究员
2002-07~2005-07,中国科学院福建物质结构研究所, 实习研究员

出版信息


发表论文
[1] 杜顺福, 王文经, ELSAYED, ElSayed, M, 苏孔钊, 袁大强, 洪茂椿. 一种具有化学发光性能的锆基金属有机四面体. 高等学校化学学报. 2022, 43(1): 168-172, [2] 杜顺福, 王文经, EL-SAYED El-Sayed M., 苏孔钊, 袁大强, 洪茂椿. 一种具有化学发光性能的锆基金属有机四面体(英文). 高等学校化学学报. 2022, 170-174, https://t.cnki.net/kcms/detail?v=3uoqIhG8C44YLTlOAiTRKu87-SJxoEJu6LL9TJzd50nAdNTLumgZjckqjCWinShOwm9qJSjUuyoQcnGhP8jBEgU4NSN1doUA&uniplatform=NZKPT.
[3] Ji, Chunqing, Wang, Wenjing, ElSayed, ElSayed M, Liu, Guoliang, Si, Yanan, Su, Kongzhao, Ju, Zhanfeng, Wu, Fan, Yuan, Daqiang. A high-efficiency dye-sensitized Pt(II) decorated metal-organic cage for visible-light-driven hydrogen production. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2021, 285: http://dx.doi.org/10.1016/j.apcatb.2020.119782.
[4] Zhang, Yiwen, Zhang, Min, Han, Zhengbo, Huang, Shijun, Yuan, Daqiang, Su, Weiping. Atmosphere-Pressure Methane Oxidation to Methyl Trifluoroacetate Enabled by a Porous Organic Polymer-Supported Single-Site Palladium Catalyst. ACS CATALYSIS[J]. 2021, 11(3): 1008-1013, https://www.webofscience.com/wos/woscc/full-record/WOS:000618540300001.
[5] Zhang, Lei, Li, XiaoXin, Lang, ZhongLing, Liu, Yang, Liu, Jiang, Yuan, Lin, Lu, WanYue, Xia, YuanSheng, Dong, LongZhang, Yuan, DaQiang, Lan, YaQian. Enhanced Cuprophilic Interactions in Crystalline Catalysts Facilitate the Highly Selective Electroreduction of CO2 to CH4. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY[J]. 2021, 143(10): 3808-3816, https://www.webofscience.com/wos/woscc/full-record/WOS:000630322300021.
[6] Wu, Fan, Li, Liqiong, Tan, Yanxi, ElSayed, ElSayed M, Yuan, Daqiang. The competitive and synergistic effect between adsorption enthalpy and capacity in D-2/H-2 separation of M-2(m-dobdc) frameworks. CHINESE CHEMICAL LETTERS[J]. 2021, 32(11): 3562-3565, http://dx.doi.org/10.1016/j.cclet.2021.02.063.
[7] Kongzhao Su, Wenjing Wang, Shunfu Du, Chunqing Ji, Daqiang Yuan. Efficient ethylene purification by a robust ethane-trapping porous organic cage. NATURE COMMUNICATIONS[J]. 2021, 12(1): http://dx.doi.org/10.1038/s41467-021-24042-7.
[8] Lei Zhang, Fangfang Li, Jianjun You, Nengbin Hua, Qianting Wang, Junhui Si, Wenzhe Chen, Wenjing Wang, Xiaoyuan Wu, Wenbin Yang, Daqiang Yuan, Canzhong Lu, Yanrong Liu, Ayman Nafady, Shengqian Ma. A window–space-directed assembly strategy for the construction of supertetrahedron-based zeolitic mesoporous metal–organic frameworks with ultramicroporous apertures for selective gas adsorption. Chemical Science[J]. 2021, 5767-5773, [9] Si, Yanan, He, Xiang, Jiang, Jie, Duan, Zhiming, Wang, Wenjing, Yuan, Daqiang. Highly effective H-2/D-2 separation in a stable Cu-based metal-organic framework. NANO RESEARCH[J]. 2021, 14(2): 518-525, http://lib.cqvip.com/Qikan/Article/Detail?id=7103999382.
[10] Li, YongPeng, Zhao, YongNi, Li, ShuNi, Yuan, DaQiang, Jiang, YuCheng, Bu, Xianhui, Hu, ManCheng, Zhai, QuanGuo. Ultrahigh-Uptake Capacity-Enabled Gas Separation and Fruit Preservation by a New Single-Walled Nickel-Organic Framework. ADVANCED SCIENCE[J]. 2021, 8(12): https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8224448/.
[11] Li, Hao, Liu, Caiping, Chen, Cheng, Di, Zhengyi, Yuan, Daqiang, Pang, Jiandong, Wei, Wei, Wu, Mingyan, Hong, Maochun. An Unprecedented Pillar-Cage Fluorinated Hybrid Porous Framework with Highly Efficient Acetylene Storage and Separation. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION[J]. 2021, 60(14): 7547-7552, https://www.webofscience.com/wos/woscc/full-record/WOS:000621408500001.
[12] Binaeian, Ehsan, ElSayed, ElSayed M, Matikolaei, Mojtaba Khanpour, Yuan, Daqiang. Experimental strategies on enhancing toxic gases uptake of metal-organic frameworks. COORDINATION CHEMISTRY REVIEWSnull. 2021, 430: http://dx.doi.org/10.1016/j.ccr.2020.213738.
[13] Du, Shunfu, Yu, Xuying, Liu, Guoliang, Zhou, Mi, ElSayed, EISayed M, Ju, Zhanfeng, Su, Kongzhao, Yuan, Daqiang. A Straightforward Strategy for Constructing Zirconium Metallocavitands. CRYSTAL GROWTH & DESIGN[J]. 2021, 21(1): 692-697, https://www.webofscience.com/wos/woscc/full-record/WOS:000607623900070.
[14] Di, Zhengyi, Liu, Caiping, Pang, Jiandong, Chen, Cheng, Hu, Falu, Yuan, Daqiang, Wu, Mingyan, Hong, Maochun. Cage-Like Porous Materials with Simultaneous High C2H2 Storage and Excellent C2H2/CO2 Separation Performance. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION[J]. 2021, 60(19): 10828-10832, http://dx.doi.org/10.1002/anie.202101907.
[15] Li, Runxian, Wang, Wenjing, ElSayed, M ElSayed, Su, Kongzhao, He, Pingli, Yuan, Daqiang. Ratiometric fluorescence detection of tetracycline antibiotic based on a polynuclear lanthanide metal-organic framework. SENSORS AND ACTUATORS B-CHEMICAL[J]. 2021, 330: http://dx.doi.org/10.1016/j.snb.2020.129314.
[16] Wang, Chunfei, Wang, Wenjing, Tan, Jingyun, Zhang, Xuanjun, Yuan, Daqiang, Zhou, HongCai. Coordination-based molecular nanomaterials for biomedically relevant applications. COORDINATION CHEMISTRY REVIEWSnull. 2021, 438: http://dx.doi.org/10.1016/j.ccr.2020.213752.
[17] Liu, Guoliang, Yang, Ziqi, Zhou, Mi, Wang, Yuxiang, Yuan, Daqiang, Zhao, Dan. Heterogeneous postassembly modification of zirconium metal-organic cages in supramolecular frameworks. CHEMICAL COMMUNICATIONS[J]. 2021, 57(51): 6276-6279, http://dx.doi.org/10.1039/d1cc01606g.
[18] Zhou, HouGan, Xia, RiQin, Zheng, Ji, Yuan, Daqiang, Ning, GuoHong, Li, Dan. Acid-triggered interlayer sliding of two-dimensional copper(i)-organic frameworks: more metal sites for catalysis. CHEMICAL SCIENCE[J]. 2021, 12(18): 6280-6286, http://dx.doi.org/10.1039/d1sc00924a.
[19] Zhang, Yiwen, ElSayed, ElSayed M, Su, Kongzhao, Yuan, Daqiang, Han, Zhengbo. Facile syntheses of ionic polymers for efficient catalytic conversion of CO2 to cyclic carbonates. JOURNAL OF CO2 UTILIZATION[J]. 2020, 42: http://dx.doi.org/10.1016/j.jcou.2020.101301.
[20] Tian, Jiayue, Liu, Luyao, Zhou, Kang, Hong, Zixiao, Chen, Qihui, Jiang, Feilong, Yuan, Daqiang, Sun, Qingfu, Hong, Maochun. Metal-organic tube or layered assembly: reversible sheet-to-tube transformation and adaptive recognition. CHEMICAL SCIENCE[J]. 2020, 11(36): 9818-9826, https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8162108/.
[21] Zhao, FengJuan, Zhang, Guoliang, Ju, Zhanfeng, Tan, YanXi, Yuan, Daqiang. The Combination of Charge and Energy Transfer Processes in MOFs for Efficient Photocatalytic Oxidative Coupling of Amines. INORGANIC CHEMISTRY[J]. 2020, 59(5): 3297-3303, https://www.webofscience.com/wos/woscc/full-record/WOS:000518088800076.
[22] Pang, Jiandong, Di, Zhengyi, Qin, JunSheng, Yuan, Shuai, Lollar, Christina T, Li, Jialuo, Zhang, Peng, Wu, Mingyan, Yuan, Daqiang, Hong, Maochun, Zhou, HongCai. Precisely Embedding Active Sites into a Mesoporous Zr-Framework through Linker Installation for High-Efficiency Photocatalysis. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY[J]. 2020, 142(35): 15020-15026, http://dx.doi.org/10.1021/jacs.0c05758.
[23] Park, Seonghun, Lee, Jieun, Kim, Bongkyum, Yuan, Daqiang, Chen, YingPin, Park, Jinhee. Unprecedented porosity transformation of hierarchically porous TiO2 derived from Ti-Oxo clusters. MICROPOROUS AND MESOPOROUS MATERIALS[J]. 2020, 300: http://dx.doi.org/10.1016/j.micromeso.2020.110153.
[24] Zhao, Yanming, Dai, Wenhao, Peng, Yunlei, Niu, Zheng, Sun, Qi, Shan, Chuan, Yang, Hui, Verma, Gaurav, Wojtas, Lukasz, Yuan, Daqiang, Zhang, Zhenjie, Dong, Haifeng, Zhang, Xueji, Zhang, Bao, Feng, Yaqing, Ma, Shengqian. A Corrole-Based Covalent Organic Framework Featuring Desymmetrized Topology. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION[J]. 2020, 59(11): 4354-4359, https://www.webofscience.com/wos/woscc/full-record/WOS:000510496700001.
[25] Tian, Jiayue, Jiang, Feilong, Yuan, Daqiang, Zhang, Linjie, Chen, Qihui, Hong, Maochun. Electric-Field Assisted In Situ Hydrolysis of Bulk Metal-Organic Frameworks (MOFs) into Ultrathin Metal Oxyhydroxide Nanosheets for Efficient Oxygen Evolution. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION[J]. 2020, 59(31): 13101-13108, https://www.webofscience.com/wos/woscc/full-record/WOS:000535293900001.
[26] Tian, Jiayue, Shi, Chengdan, Xiao, Cao, Jiang, Feilong, Yuan, Daqiang, Chen, Qihui, Hong, Maochun. Introduction of Flexibility into a Metal-Organic Framework to Promote Hg(II) Capture through Adaptive Deformation. INORGANIC CHEMISTRY[J]. 2020, 59(24): 18264-18275, http://dx.doi.org/10.1021/acs.inorgchem.0c02781.
[27] Su, Kongzhao, Du, Shunfu, Wang, Wenjing, Yuan, Daqiang. Control of random self-assembly of pyrogallol4arene-based nanocapsule or framework. CHINESE CHEMICAL LETTERS[J]. 2020, 31(7): 2023-2026, http://lib.cqvip.com/Qikan/Article/Detail?id=7103028943.
[28] Binaeian, Ehsan, Zadvarzi, Saber Babaee, Yuan, Daqiang. Anionic dye uptake via composite using chitosan-polyacrylamide hydrogel as matrix containing TiO2 nanoparticles; comprehensive adsorption studies. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES[J]. 2020, 162: 150-162, http://dx.doi.org/10.1016/j.ijbiomac.2020.06.158.
[29] Wu, Dong, Zhou, Kang, Tian, Jiayue, Liu, Caiping, Jiang, Feilong, Yuan, Daqiang, Chen, Qihui, Hong, Maochun. A tubular luminescent framework: precise decoding of nitroaniline isomers and quantitative detection of traces of benzaldehyde in benzyl alcohol. JOURNAL OF MATERIALS CHEMISTRY C[J]. 2020, 8(29): 9828-9835, https://www.webofscience.com/wos/woscc/full-record/WOS:000554788100035.
[30] Yu, Yanxin, Li, Guoliang, Liu, Jianghua, Yuan, Daqiang. A recyclable fluorescent covalent organic framework for exclusive detection and removal of mercury(II). CHEMICAL ENGINEERING JOURNAL[J]. 2020, 401: http://dx.doi.org/10.1016/j.cej.2020.126139.
[31] Ju, Zhanfeng, ElSayed, ElSayed M, Yuan, Daqiang. Dynamic metal-organic frameworks for the separation of hydrogen isotopes. DALTON TRANSACTIONSnull. 2020, 49(46): 16617-16622, https://www.webofscience.com/wos/woscc/full-record/WOS:000597124500006.
[32] Zhong, Hong, Sa, Rongjian, Lv, Haowei, Yang, Shuailong, Yuan, Daqiang, Wang, Xinchen, Wang, Ruihu. Covalent Organic Framework Hosting Metalloporphyrin-Based Carbon Dots for Visible-Light-Driven Selective CO(2)Reduction. ADVANCED FUNCTIONAL MATERIALS[J]. 2020, 30(35): https://www.webofscience.com/wos/woscc/full-record/WOS:000546397400001.
[33] Wu, Dong, Liu, Caiping, Tian, Jiayue, Jiang, Feilong, Yuan, Daqiang, Chen, Qihui, Hong, Maochun. Acid-Base-Resistant Metal-Organic Framework for Size-Selective Carbon Dioxide Capture. INORGANIC CHEMISTRY[J]. 2020, 59(18): 13542-13550, https://www.webofscience.com/wos/woscc/full-record/WOS:000575028000066.
[34] Lijun Mao, Yang Hu, Qian Tu, WeiLing Jiang, XiaoLi Zhao, Wenjing Wang, Daqiang Yuan, Jin Wen, Xueliang Shi. Highly efficient synthesis of non-planar macrocycles possessing intriguing self-assembling behaviors and ethene/ethyne capture properties. NATURE COMMUNICATIONS[J]. 2020, 11(1): https://doaj.org/article/960167a5878f4d7087e72c2bae579ada.
[35] Li, Hui, Ding, Jiehua, Guan, Xinyu, Chen, Fengqian, Li, Cuiyan, Zhu, Liangkui, Xue, Ming, Yuan, Daqiang, Valtchev, Valentin, Yan, Yushan, Qiu, Shilun, Fang, Qianrong. Three-Dimensional Large-Pore Covalent Organic Framework with stp Topology. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY[J]. 2020, 142(31): 13334-13338, https://www.webofscience.com/wos/woscc/full-record/WOS:000558793400013.
[36] Dong, Jinqiao, Shen, Pingchuan, Ying, Shaoming, Li, ZiJian, Yuan, Yi Di, Wang, Yuxiang, Zheng, Xiaoyan, Peh, Shing Bo, Yuan, Hongye, Liu, Guoliang, Cheng, Youdong, Pan, Yutong, Shi, Leilei, Zhang, Jian, Yuan, Daqiang, Liu, Bin, Zhao, Zujin, Tang, Ben Zhong, Zhao, Dan. Aggregation-Induced Emission-Responsive Metal-Organic Frameworks. CHEMISTRY OF MATERIALS[J]. 2020, 32(15): 6706-6720, http://dx.doi.org/10.1021/acs.chemmater.0c02277.
[37] Lv, Haowei, Sa, Rongjian, Li, Pengyue, Yuan, Daqiang, Wang, Xinchen, Wang, Ruihu. Metalloporphyrin-based covalent organic frameworks composed of the electron donor-acceptor dyads for visible-light-driven selective CO(2)reduction. SCIENCE CHINA-CHEMISTRY[J]. 2020, 63(9): 1289-1294, http://lib.cqvip.com/Qikan/Article/Detail?id=7102701161.
[38] ElSayed, ElSayed M, Yuan, Daqiang. Metal-Organic Cages (MOCs): From Discrete to Cage-based Extended Architectures. CHEMISTRY LETTERSnull. 2020, 49(1): 28-53, https://www.webofscience.com/wos/woscc/full-record/WOS:000504762600006.
[39] Su, Kongzhao, Wang, Wenjing, Du, Shunfu, Ji, Chunqing, Zhou, Mi, Yuan, Daqiang. Reticular Chemistry in the Construction of Porous Organic Cages. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY[J]. 2020, 142(42): 18060-18072, http://dx.doi.org/10.1021/jacs.0c07367.
[40] Si, Yanan, Wang, Wenjing, ElSayed, ElSayed M, Yuan, Daqiang. Use of breakthrough experiment to evaluate the performance of hydrogen isotope separation for metal-organic frameworks M-MOF-74 (M=Co, Ni, Mg, Zn). SCIENCE CHINA-CHEMISTRY[J]. 2020, 63(7): 881-889, http://lib.cqvip.com/Qikan/Article/Detail?id=7102329220.
[41] ElSayed, ElSayed M, Yuan, Daqiang. Waste to MOFs: sustainable linker, metal, and solvent sources for value-added MOF synthesis and applications. GREEN CHEMISTRY[J]. 2020, 22(13): 4082-4104, https://www.webofscience.com/wos/woscc/full-record/WOS:000545862800005.
[42] Fan, Weidong, Yuan, Shuai, Wang, Wenjing, Feng, Liang, Liu, Xiuping, Zhang, Xiurong, Wang, Xia, Kang, Zixi, Dai, Fangna, Yuan, Daqiang, Sun, Daofeng, Zhou, HongCai. Optimizing Multivariate Metal-Organic Frameworks for Efficient C2H2/CO2 Separation. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY[J]. 2020, 142(19): 8728-8737, http://dx.doi.org/10.1021/jacs.0c00805.
[43] Zhou, Mi, Liu, Guoliang, Ju, Zhanfeng, Su, Kongzhao, Du, Shunfu, Tan, Yanxi, Yuan, Daqiang. Hydrogen-Bonded Framework Isomers Based on Zr-Metal Organic Cage: Connectivity, Stability, and Porosity. CRYSTAL GROWTH & DESIGN[J]. 2020, 20(6): 4127-4134, https://www.webofscience.com/wos/woscc/full-record/WOS:000538515500062.
[44] Zhang, Yiwen, Su, Kongzhao, Hong, Zixiao, Han, Zhengbo, Yuan, Daqiang. Robust Cationic Calix4arene Polymer as an Efficient Catalyst for Cycloaddition of Epoxides with CO2. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH[J]. 2020, 59(15): 7247-7254, https://www.webofscience.com/wos/woscc/full-record/WOS:000526339100044.
[45] Zhou, Mi, ElSayed, ElSayed M, Ju, Zhanfeng, Wang, Wenjing, Yuan, Daqiang. The synthesis and applications of chiral pyrrolidine functionalized metal-organic frameworks and covalent-organic frameworks. INORGANIC CHEMISTRY FRONTIERSnull. 2020, 7(6): 1319-1333, https://www.webofscience.com/wos/woscc/full-record/WOS:000521125100015.
[46] Fan, Weidong, Wang, Xia, Liu, Xiuping, Xu, Ben, Zhang, Xiurong, Wang, Wenjing, Wang, Xiaokang, Wang, Yutong, Dai, Fangna, Yuan, Daqiang, Sun, Daofeng. Regulating C2H2 and CO2 Storage and Separation through Pore Environment Modification in a Microporous Ni-MOF. ACS SUSTAINABLE CHEMISTRY & ENGINEERING[J]. 2019, 7(2): 2134-2140, https://www.webofscience.com/wos/woscc/full-record/WOS:000456631800034.
[47] Li, Beibei, Wang, Wenjing, Hong, Zixiao, ElSayed, ElSayed M, Yuan, Daqiang. Ratiometric fluorescence detection of trace water in an organic solvent based on bimetallic lanthanide metal-organic frameworks. CHEMICAL COMMUNICATIONS[J]. 2019, 55(48): 6926-6929, https://www.webofscience.com/wos/woscc/full-record/WOS:000471042200023.
[48] Dong, Jinqiao, Li, Xu, Peh, Shing Bo, Yuan, Yi Di, Wang, Yuxiang, Ji, Dongxiao, Peng, Shengjie, Liu, Guoliang, Ying, Shaoming, Yuan, Daqiang, Jiang, Jianwen, Ramakrishna, Seeram, Zhao, Dan. Restriction of Molecular Rotors in Ultrathin Two-Dimensional Covalent Organic Framework Nanosheets for Sensing Signal Amplification. CHEMISTRY OF MATERIALS[J]. 2019, 31(1): 146-160, [49] Chen, Yuan, Tang, Mi, Wu, Yanchao, Su, Xiaozhi, Li, Xiang, Xu, Shuaifei, Zhuo, Shuming, Ma, Jing, Yuan, Daqiang, Wang, Chengliang, Hu, Wenping. A One-Dimensional pi-d Conjugated Coordination Polymer for Sodium Storage with Catalytic Activity in Negishi Coupling. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION[J]. 2019, 58(41): 14731-14739, [50] Wang, Yuxiang, Yuan, Shuai, Hu, Zhigang, Kundu, Tanay, Zhang, Jian, Peh, Shing Bo, Cheng, Youdong, Dong, Jinqiao, Yuan, Daqiang, Zhou, HongCai, Zhao, Dan. Pore Size Reduction in Zirconium Metal-Organic Frameworks for Ethylene/Ethane Separation. ACS SUSTAINABLE CHEMISTRY & ENGINEERING[J]. 2019, 7(7): 7118-7126, https://www.webofscience.com/wos/woscc/full-record/WOS:000463462100071.
[51] Pang, Jiandong, Wu, Mingyan, Qin, JunSheng, Liu, Caiping, Lollar, Christina T, Yuan, Daqiang, Hong, Maochun, Zhou, HongCai. Solvent-Assisted, Thermally Triggered Structural Transformation in Flexible Mesoporous Metal-Organic Frameworks. CHEMISTRY OF MATERIALS[J]. 2019, 31(21): 8787-8793, [52] Tan, Jingyun, Wang, Chunfei, Lao, Hio Kuan, Feng, Gang, Li, Gang, Wang, Wenjing, Yuan, Daqiang, Wu, Changfeng, Zhang, Xuanjun. Efficient synthesis and facile functionalization of highly fluorescent spiro pyrrol-pyran. DYES AND PIGMENTS[J]. 2019, 171: http://dx.doi.org/10.1016/j.dyepig.2019.107777.
[53] Ye, Changqing, Li, Yajun, Zhu, Xiaotao, Hu, Shengmin, Yuan, Daqiang, Bao, Hongli. Copper-catalyzed 1,4-alkylarylation of 1,3-enynes with masked alkyl electrophiles. CHEMICAL SCIENCE[J]. 2019, 10(12): 3632-3636, [54] Xue, Hui, Zhou, Kang, Liu, Luyao, Wu, Dong, Hong, Zixiao, Chen, Qihui, Jiang, Feilong, Yuan, Daqiang, Zhang, Jian, Hong, Maochun. Chiral induction in a pcu-derived network from achiral precursors. CHEMICAL COMMUNICATIONS[J]. 2019, 55(32): 4611-4614, [55] Wang, Wenjing, Song, XiaoWei, Hong, Zixiao, Li, Beibei, Si, Yanan, Ji, Chunqing, Su, Kongzhao, Tan, Yanxi, Ju, Zhanfeng, Huang, Yiyin, Chen, ChangNeng, Yuan, Daqiang. Incorporation of iron hydrogenase active sites into a stable photosensitizing metal-organic framework for enhanced hydrogen production. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2019, 258: http://dx.doi.org/10.1016/j.apcatb.2019.117979.
[56] Chen, HuiJun, Zheng, XiuYing, Zhao, YaRui, Yuan, DaQiang, Kong, XiangJian, Long, LaSheng, Zheng, LanSun. A Record-Breaking Loading Capacity for Single-Molecule Magnet Mn-12 Clusters Achieved in a Mesoporous Ln-MOF. ACS APPLIED ELECTRONIC MATERIALS[J]. 2019, 1(6): 804-809, https://www.webofscience.com/wos/woscc/full-record/WOS:000496314400002.
[57] Liang LinFeng, Jiang FeiLong, Chen QiHui, Yuan DaQiang, Hong MaoChun. Ultra-microporous Metal-organic Framework with High Concentration of Free Carboxyl Groups and Lewis Basic Sites for CO2 Capture at Ambient Conditions. CHINESE JOURNAL OF STRUCTURAL CHEMISTRY[J]. 2019, 38(4): 559-565, http://lib.cqvip.com/Qikan/Article/Detail?id=74717288504849574852484856.
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发表著作
(1) 金属簇单元构筑的配位框架化合物(结构无机化学), Coordination Frameworks Constructed from Metal Cluster Units (Structural Inorganic Chemistry), cience Press and Science Press USA Inc., 2005-12, 第 2 作者
(2) 无机化合物制备手册, Inorganic Compound Preparation Manual, 化学工业出版社, 2006-09, 第 5 作者
(3) 金属有机框架(纳米结构材料化学,卷2), Metal-Organic Frameworks (The Chemistry of Nanostructured Materials, Volume II), World Scientific Publishing Company, Incorporated, 2010-12, 第 2 作者
(4) Advanced Nanomaterials and Their Applications in Renewable Energy (Chapter 6), Elsevier Inc., 2015-07, 第 1 作者

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