基本信息
姜政  男  博导  中国科学院上海应用物理研究所
电子邮件: jiangzheng@sinap.ac.cn
通信地址: 浦东新区张衡路239号
邮政编码: 201204

研究领域

X射线吸收谱学对能源材料相关研究(能源转换、电催化、费托)
X射线吸收谱学光束线站建设
同步辐射X射线谱学方法研究(高分辨吸收谱、发射谱、时间分辨谱学、原位谱学)

详情见课题组主页:https://www.x-mol.com/groups/jiangzheng

招生信息

   
招生专业
082703-核技术及应用
070304-物理化学
070205-凝聚态物理
招生方向
同步辐射及其应用,光束线技术,XAFS
纳米材料,催化剂,电池
原位电催化

教育背景

2000-07--中国科学技术大学   硕士博士
1995-07--中国科学技术大学   学士
学历
中国科学技术大学 --20050701 研究生毕业
学位
-- 工学博士学位

工作经历

2018.10- 上海高等研究院;上海应用物理研究所 上海光源
2005.7- 2018.10 上海应用物理研究所 上海光源
2007.1-2007. 3 Australian Synchrotron 高级访问学者
2013.10-2013.12 Fritz Haber Institute DER MAX PLANCK Gesellschaft; BESSYII HZB 高级访问学者

教授课程

同步辐射实验技术

出版信息


发表论文
[1] Shuai Yang, Xuewen Li, Tingyuan Tan, Jianing Mao, Qing Xu, Minghao Liu, Qiyang Miao, BingBao Mei, Panzhe Qiao, Songqi Gu, Fanfei Sun, Jingyuan Ma, Gaofeng Zeng, Zheng Jiang. A fully-conjugated covalent organic framework-derived carbon supporting ultra-close single atom sites for ORR. Applied Catalysis B: Environmental[J]. 2022, 307: [2] Jiang Zheng. Operando HERFD-XANES and surface sensitive D l analyses identify the structural evolution of copper(II) phthalocyanine for electroreduction of CO 2. Journal of Energy Chemistry. 2022, [3] Bingbao Mei, Cong Liu, Ji Li, Songqi Gu, Xianlong Du, Siyu Lu, Fei Song, Weilin Xu, Zheng Jiang. Operando HERFD-XANES and surface sensitive Δμ analyses identify the structural evolution of copper(II) phthalocyanine for electroreduction of CO2. Journal of Energy Chemistry. 2022, 64: 1-7, http://dx.doi.org/10.1016/j.jechem.2021.04.049.
[4] Yang, Jie, Fu, Wenzhao, Chen, Chaoqiu, Chen, Wenyao, Huang, Wugen, Yang, Ruoou, Kong, Qingqiang, Zhang, Baiyan, Zhao, Jixiao, Chen, Chengmeng, Luo, Jun, Yang, Fan, Duan, Xuezhi, Jiang, Zheng, Qin, Yong. Atomic Design and Fine-Tuning of Subnanometric Pt Catalysts to Tame Hydrogen Generation. ACS CATALYSIS[J]. 2021, 11(7): 4146-4156, http://dx.doi.org/10.1021/acscatal.0c04614.
[5] 任周, 刘洋, 吕元, 宋宪根, 郑长勇, 姜政, 丁云杰. 通过“双离子键”固载于季鏻盐聚合物的[Rh(CO)I3]2–物种在多相乙醇羰基化中的应用(英文). Chinese Journal of Catalysis. 2021, 606-617, https://kns.cnki.net/KCMS/detail/detail.aspx?dbcode=CJFQ&dbname=CJFDLAST2021&filename=CHUA202104008&v=MDU4MTdiek9KaVhlYjdHNEhORE1xNDlGYklSOGVYMUx1eFlTN0RoMVQzcVRyV00xRnJDVVI3dWZZZWRuRkNyZ1U=.
[6] Wang, Jigang, Ning, Shunlian, Luo, Mi, Xiang, Dong, Chen, Wei, Kang, Xiongwu, Jiang, Zheng, Chen, Shaowei. In-Sn alloy core-shell nanoparticles: In-doped SnOx shell enables high stability and activity towards selective formate production from electrochemical reduction of CO2. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2021, 288: http://dx.doi.org/10.1016/j.apcatb.2021.119979.
[7] Zhao, Dongyue, Yang, Yuexi, Gao, Zhongnan, Yin, Mengxin, Tian, Ye, Zhang, Jing, Jiang, Zheng, Yu, Xiaobo, Li, Xingang. Promoting NOx reduction via in situ activation of perovskite supported Pd catalysts under alternating lean-burn/fuel-rich operating atmospheres. CHINESE JOURNAL OF CATALYSIS[J]. 2021, 42(5): 795-807, https://www.webofscience.com/wos/woscc/full-record/WOS:000637705600011.
[8] Lin, Lili, Yu, Qiaolin, Peng, Mi, Li, Aowen, Yao, Siyu, Tian, Shuheng, Liu, Xi, Li, Ang, Jiang, Zheng, Gao, Rui, Han, Xiaodong, Li, YongWang, Wen, XiaoDong, Zhou, Wu, Ma, Ding. Atomically Dispersed Ni/alpha-MoC Catalyst for Hydrogen Production from Methanol/Water. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY[J]. 2021, 143(1): 309-317, https://www.webofscience.com/wos/woscc/full-record/WOS:000611083700040.
[9] 汪文龙, 李存耀, 张恒, 张江威, 卢兰露, 姜政, 崔立峰, 刘宏光, 严丽, 丁云杰. PPh_(3)衍生准多孔有机笼在Rh/PPh_(3)体系催化氢甲酰化反应中的应用:增强活性和选择性及可回收利用. 催化学报. 2021, 42(7): 1216-1226, http://lib.cqvip.com/Qikan/Article/Detail?id=7103993121.
[10] 赵东越, 杨岳溪, 高中楠, 尹萌欣, 田野, 张静, 姜政, 于晓波, 李新刚. 贫燃/富燃循环气氛下原位活化Pd负载钙钛矿催化剂促进NO_(x)还原消除. 催化学报. 2021, 42(5): 795-807, http://lib.cqvip.com/Qikan/Article/Detail?id=7103978371.
[11] Ren, Zhou, Liu, Yang, Lyu, Yuan, Song, Xiangen, Zheng, Changyong, Jiang, Zheng, Ding, Yunjie. Quaternary phosphonium polymer-supported dual-ionically bound Rh(CO)I-3(2-) catalyst for heterogeneous ethanol carbonylation. CHINESE JOURNAL OF CATALYSIS[J]. 2021, 42(4): 606-617, http://dx.doi.org/10.1016/S1872-2067(20)63676-2.
[12] Feng, Siquan, Lin, Xiangsong, Song, Xiangen, Mei, Bingbao, Mu, Jiali, Li, Jingwei, Liu, Yang, Jiang, Zheng, Ding, Yunjie. Constructing Efficient Single Rh Sites on Activated Carbon via Surface Carbonyl Groups for Methanol Carbonylation. ACS CATALYSIS[J]. 2021, 11(2): 682-690, https://www.webofscience.com/wos/woscc/full-record/WOS:000611450000019.
[13] Wang, Yating, Peng, Chaosheng, Jiang, Tao, Zhang, Jing, Jiang, Zheng, Li, Xingang. Construction of defect-engineered three-dimensionally ordered macroporous WO3 for efficient photocatalytic water oxidation reaction. JOURNAL OF MATERIALS CHEMISTRY A[J]. 2021, 9(5): 3036-3043, http://dx.doi.org/10.1039/d0ta10803k.
[14] Li, Yang, Wang, Xian, Mei, Bingbao, Wang, Ying, Luo, Zhaoyan, Luo, Ergui, Yang, Xiaolong, Shi, Zhaoping, Liang, Liang, Jin, Zhao, Wu, Zhijian, Jiang, Zheng, Liu, Changpeng, Xing, Wei, Ge, Junjie. Carbon monoxide powered fuel cell towards H2-onboard purification. SCIENCE BULLETIN[J]. 2021, 66(13): 1305-1311, http://dx.doi.org/10.1016/j.scib.2021.02.006.
[15] Cai, Jinmeng, Cao, Ang, Wang, Zhenbin, Lu, Siyu, Jiang, Zheng, Dong, XiYan, Li, Xingang, Zang, ShuangQuan. Surface oxygen vacancies promoted Pt redispersion to single-atoms for enhanced photocatalytic hydrogen evolution. JOURNAL OF MATERIALS CHEMISTRY A[J]. 2021, 9(24): 13890-13897, http://dx.doi.org/10.1039/d1ta01400e.
[16] 杨予琪, 张光颖, 孙凡飞, 梅丙宝, 杨帅, 姜政, 朱志远. 钒调制钴-氮-碳催化剂氧还原反应性能. 核技术. 2021, 44(8): 9-17, http://lib.cqvip.com/Qikan/Article/Detail?id=7105352429.
[17] Zhang, Xiao, Zhang, Mengtao, Deng, Yuchen, Xu, Mingquan, Artiglia, Luca, Wen, Wen, Gao, Rui, Chen, Bingbing, Yao, Siyu, Zhang, Xiaochen, Peng, Mi, Yan, Jie, Li, Aowen, Jiang, Zheng, Gao, Xingyu, Cao, Sufeng, Yang, Ce, Kropf, A Jeremy, Shi, Jinan, Xie, Jinglin, Bi, Mingshu, van Bokhoven, Jeroen A, Li, YongWang, Wen, Xiaodong, FlytzaniStephanopoulos, Maria, Shi, Chuan, Zhou, Wu, Ma, Ding. A stable low-temperature H-2-production catalyst by crowding Pt on alpha-MoC. NATURE[J]. 2021, 589(7842): 396-+, http://dx.doi.org/10.1038/s41586-020-03130-6.
[18] 任周, 刘洋, 吕元, 宋宪根, 郑长勇, 姜政, 丁云杰. 通过“双离子键”固载于季鏻盐聚合物的Rh(CO)I_(3)^(2–)物种在多相乙醇羰基化中的应用. 催化学报. 2021, 42(4): 606-617, http://lib.cqvip.com/Qikan/Article/Detail?id=7103978627.
[19] Guo, Lihong, Bo, Ling, Li, Ying, Jiang, Zheng, Tian, Ye, Li, Xingang. Sr doping effect on the structure property and NO oxidation performance of dual-site doped perovskite La(Sr)Co(Fe)O-3. SOLID STATE SCIENCES[J]. 2021, 113: http://dx.doi.org/10.1016/j.solidstatesciences.2020.106519.
[20] Wang, Wenlong, Li, Cunyao, Zhang, Heng, Zhang, Jiangwei, Lu, Lanlu, Jiang, Zheng, Cui, Lifeng, Liu, Hongguang, Yan, Li, Ding, Yunjie. Enhancing the activity, selectivity, and recyclability of Rh/PPh3 system-catalyzed hydroformylation reactions through the development of a PPh3-derived quasi-porous organic cage as a ligand. CHINESE JOURNAL OF CATALYSIS[J]. 2021, 42(7): 1216-1226, http://dx.doi.org/10.1016/S1872-2067(20)63746-9.
[21] Nating Yang, Yonghui Zhao, Hao Zhang, Weikai Xiang, Yuhan Sun, Shuai Yang, Yu Sun, Gaofeng Zeng, Kenichi Kato, Xiaopeng Li, Miho Yamauchi, Zheng Jiang, Tong Li. Sintering Activated Atomic Palladium Catalysts with High-Temperature Tolerance of ∼1,000°C. Cell Reports Physical Science[J]. 2021, 2(1): http://dx.doi.org/10.1016/j.xcrp.2020.100287.
[22] Hu, Jinping, Liang, Zhaofeng, Shen, Kongchao, Xie, Lei, Zhang, Huan, Huang, Chaoqin, Huang, Yaobo, Huang, Han, Tang, Jianxin, Jiang, Zheng, Yu, Miao, fei song. Identifying the convergent reaction path from predesigned assembled structures: Dissymmetrical dehalogenation of Br2Py on Ag(111). NANO RESEARCH[J]. 2021, 14(12): 4704-4713, http://dx.doi.org/10.1007/s12274-021-3409-9.
[23] Qiu, Pengpeng, Yao, Yu, Li, Wei, Sun, Yang, Jiang, Zheng, Mei, Bingbao, Gu, Lin, Zhang, Qinghua, Shang, Tongtong, Yu, Xiqian, Yang, Jianping, Fang, Yuan, Zhu, Guihua, Zhang, Ziling, Zhu, Xiaohang, Zhao, Tao, Jiang, Wan, Fan, Yuchi, Wang, Lianjun, Ma, Bin, Liu, Liangliang, Yu, Yan, Luo, Wei. Sub-nanometric Manganous Oxide Clusters in Nitrogen Doped Mesoporous Carbon Nanosheets for High-Performance Lithium-Sulfur Batteries. NANO LETTERS[J]. 2021, 21(1): 700-708, https://www.webofscience.com/wos/woscc/full-record/WOS:000611082000095.
[24] Liu, PengFei, Wang, Chongwu, Wang, Yun, Li, Yuhang, Zhang, Bo, Zheng, LiRong, Jiang, Zheng, Zhao, Huijun, Yang, HuaGui. Grey hematite photoanodes decrease the onset potential in photoelectrochemical water oxidation. SCIENCE BULLETIN[J]. 2021, 66(10): 1013-1021, http://dx.doi.org/10.1016/j.scib.2021.02.016.
[25] Zhao, Yafei, Zhou, Huang, Zhu, Xiaorong, Qu, Yunteng, Xiong, Can, Xue, Zhenggang, Zhang, Qingwei, Liu, Xiaokang, Zhou, Fangyao, Mou, Xiaoming, Wang, Wenyu, Chen, Min, Xiong, Ya, Lin, Xingen, Lin, Yue, Chen, Wenxing, Wane, HuiJuan, Jiang, Zheng, Zheng, Lirong, Yao, Tao, Dong, Juncai, Wei, Shiqiang, Huang, Weixin, Gu, Lin, Luo, Jun, Li, Yafei, Wu, Yuen. Simultaneous oxidative and reductive reactions in one system by atomic design. NATURE CATALYSIS[J]. 2021, 4(2): 134-143, https://www.webofscience.com/wos/woscc/full-record/WOS:000609345800001.
[26] Xu, Jingsong, Li, Rui, Xu, CongQiao, Zeng, Rongguang, Jiang, Zheng, Mei, Bingbao, Li, Jun, Meng, Daqiao, Chen, Jun. Underpotential -deposition synthesis and in-line electrochemical analysis of single -atom copper electrocatalysts. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2021, 289: http://dx.doi.org/10.1016/j.apcatb.2021.120028.
[27] Sun, Qiming, Wang, Ning, Fan, Qiyuan, Zeng, Lei, Mayoral, Alvaro, Miao, Shu, Yang, Ruoou, Jiang, Zheng, Zhou, Wei, Zhang, Jichao, Zhang, Tianjun, Xu, Jun, Zhang, Peng, Cheng, Jun, Yang, DongChun, Jia, Ran, Li, Lin, Zhang, Qinghong, Wang, Ye, Terasaki, Osamu, Yu, Jihong. Subnanometer Bimetallic Platinum-Zinc Clusters in Zeolites for Propane Dehydrogenation. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION[J]. 2020, 59(44): 19450-19459, https://www.webofscience.com/wos/woscc/full-record/WOS:000531346900001.
[28] Mei, Bingbao, Gu, Songqi, Du, Xianlong, Li, Zhongliang, Cao, Hanjie, Song, Fei, Huang, Yuying, Jiang, Zheng. A wavelength-dispersive X-ray spectrometer for in/ex situ resonant inelastic X-ray scattering studies. X-RAY SPECTROMETRY[J]. 2020, 49(1): 251-259, [29] Lyu, Shuaishuai, Cheng, Qingpeng, Liu, Yunhao, Tian, Ye, Ding, Tong, Jiang, Zheng, Zhang, Jing, Gao, Fei, Dong, Lin, Bao, Jun, Ma, Qingxiang, Yang, QuanHong, Li, Xingang. Dopamine sacrificial coating strategy driving formation of highly active surface-exposed Ru sites on Ru/TiO2 catalysts in Fischer-Tropsch synthesis. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2020, 278: http://dx.doi.org/10.1016/j.apcatb.2020.119261.
[30] Wang, Yi, Zhang, Qinghua, Xue, ZhiChen, Yang, Lufeng, Wang, Junyang, Meng, Fanqi, Li, Qinghao, Pan, Hongyi, Zhang, JieNan, Jiang, Zheng, Yang, Wanli, Yu, Xiqian, Gu, Lin, Li, Hong. An In Situ Formed Surface Coating Layer Enabling LiCoO(2)with Stable 4.6 V High-Voltage Cycle Performances. ADVANCED ENERGY MATERIALS[J]. 2020, 10(28): https://www.webofscience.com/wos/woscc/full-record/WOS:000556596000003.
[31] Wang, ZhongLi, Choi, Jaecheol, Xu, Mingquan, Hao, Xianfeng, Zhang, Hao, Jiang, Zheng, Zuo, Ming, Kim, Jeonghun, Zhou, Wu, Meng, Xianguang, Yu, Qing, Sun, Zhihu, Wei, Shiqiang, Ye, Jinhua, Wallace, Gordon G, Officer, David L, Yamauchi, Yusuke. Optimizing Electron Densities of Ni-N-C Complexes by Hybrid Coordination for Efficient Electrocatalytic CO2 Reduction. CHEMSUSCHEM[J]. 2020, 13(5): 929-937, https://www.webofscience.com/wos/woscc/full-record/WOS:000511232600001.
[32] Hu, Jinbang, Strand, Frode Sneve, Chellappan, Rajesh Kumar, Zhang, Zhengde, Shen, Kongchao, Hu, Jinping, Ji, Gengwu, Huai, Ping, Huang, Han, Wang, Peng, Li, Zheshen, Jiang, Zheng, Wells, Justin W, fei song. Direct Synthesis of Semimetal Phthalocyanines on a Surface with Insights into Interfacial Properties. JOURNAL OF PHYSICAL CHEMISTRY C[J]. 2020, 124(15): 8247-8256, https://www.webofscience.com/wos/woscc/full-record/WOS:000526319300020.
[33] Shan, Xinyao, Liu, Jian, Mu, Haoran, Xiao, Yao, Mei, Bingbao, Liu, Wengang, Lin, Gang, Jiang, Zheng, Wen, Liping, Jiang, Lei. An Engineered Superhydrophilic/Superaerophobic Electrocatalyst Composed of the Supported CoMoSx Chalcogel for Overall Water Splitting. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION[J]. 2020, 59(4): 1659-1665, https://www.webofscience.com/wos/woscc/full-record/WOS:000500211600001.
[34] Lu, Peng, Zhao, Yi, Dong, Jing, Mei, BingBao, Du, XianLong, Jiang, Zheng, Liu, YongMei, He, HeYong, Wang, YangDong, Duan, XueZhi, Zhou, XingGui, Cao, Yong. Direct and Efficient Synthesis of Clean H2O2 from CO-Assisted Aqueous O-2 Reduction. ACS CATALYSIS[J]. 2020, 10(23): 13993-14005, https://www.webofscience.com/wos/woscc/full-record/WOS:000598140200023.
[35] Guanhong Lei, Cheng Li, Zheng Jiang, Hefei Huang. Irradiation accelerated fluoride molten salt corrosion of nickel-based UNS N10003 alloy revealed by X-ray absorption fine structure. Corrosion Science. 2020, 165: http://dx.doi.org/10.1016/j.corsci.2019.108408.
[36] Zhaoyan Luo, Hao Zhang, Yuqi Yang, Xian Wang, Yang Li, Zhao Jin, Zheng Jiang, Changpeng Liu, Wei Xing, Junjie Ge. Reactant friendly hydrogen evolution interface based on di-anionic MoS2 surface. NATURE COMMUNICATIONS[J]. 2020, 11(1): http://dx.doi.org/10.1038/s41467-020-14980-z.
[37] Wang, Yongtao, Guan, Jun, Mei, Bingbao, Fan, Mengtian, Lu, Rui, Du, Renfeng, Chen, Kaizhou, Yao, Jia, Jiang, Zheng, Li, Haoran. Distribution of Spin Density on Phenoxyl Radicals Affects the Selectivity of Aerobic Oxygenation of Phenols. INORGANIC CHEMISTRY[J]. 2020, 59(6): 3562-3569, http://dx.doi.org/10.1021/acs.inorgchem.9b02422.
[38] Yang, Yuqi, Zhang, Hao, Liang, Zhaofeng, Yin, Yaru, Mei, Bingbao, Song, Fei, Sun, Fanfei, Gu, Songqi, Jiang, Zheng, Wu, Yuen, Zhu, Zhiyuan. Role of local coordination in bimetallic sites for oxygen reduction: A theoretical analysis. JOURNAL OF ENERGY CHEMISTRY[J]. 2020, 44(5): 131-137, http://lib.cqvip.com/Qikan/Article/Detail?id=7101405655.
[39] Ma, Wenchao, Xie, Shunji, Liu, Tongtong, Fan, Qiyuan, Ye, Jinyu, Sun, Fanfei, Jiang, Zheng, Zhang, Qinghong, Cheng, Jun, Wang, Ye. Electrocatalytic reduction of CO2 to ethylene and ethanol through hydrogen-assisted C-C coupling over fluorine-modified copper. NATURE CATALYSIS[J]. 2020, 3(6): 478-487, https://www.webofscience.com/wos/woscc/full-record/WOS:000527502400001.
[40] Peng, Siquan, Lin, Xiangsong, Song, Xiangen, Liu, Yang, Jiang, Zheng, Hemberger, Patrick, Bodi, Andras, Ding, Yunjie. The role of H-2 on the stability of the single-metal-site Ir-1/AC catalyst for heterogeneous methanol carbonylation. JOURNAL OF CATALYSIS[J]. 2020, 381: 193-203, http://dx.doi.org/10.1016/j.jcat.2019.10.032.
[41] Ma, Lushan, Hu, Weibo, Mei, Bingbao, Liu, Hong, Yuan, Biao, Zang, Jian, Chen, Tao, Zou, Liangliang, Zou, Zhiqing, Yang, Bo, Yu, Yi, Ma, Jingyuan, Jiang, Zheng, Wen, Ke, Yang, Hui. Covalent Triazine Framework Confined Copper Catalysts for Selective Electrochemical CO2 Reduction: Operando Diagnosis of Active Sites. ACS CATALYSIS[J]. 2020, 10(8): 4534-4542, http://dx.doi.org/10.1021/acscatal.0c00243.
[42] Mi Xiong, Zhe Gao, Peng Zhao, Guofu Wang, Wenjun Yan, Shuangfeng Xing, Pengfei Wang, Jingyuan Ma, Zheng Jiang, Xingchen Liu, Jiping Ma, Jie Xu, Yong Qin. In situ tuning of electronic structure of catalysts using controllable hydrogen spillover for enhanced selectivity. NATURE COMMUNICATIONS[J]. 2020, 11(1): http://dx.doi.org/10.1038/s41467-020-18567-6.
[43] Lun Pan, Minhua Ai, Chenyu Huang, Li Yin, Xiang Liu, Rongrong Zhang, Songbo Wang, Zheng Jiang, Xiangwen Zhang, JiJun Zou, Wenbo Mi. Manipulating spin polarization of titanium dioxide for efficient photocatalysis. Nature Communications[J]. 2020, 11(1): 1-9, http://dx.doi.org/10.1038/s41467-020-14333-w.
[44] Cai, Jinmeng, Cao, Ang, Huang, Jingjing, Jin, Wenfeng, Zhang, Jing, Jiang, Zheng, Li, Xingang. Understanding oxygen vacancies in disorder-engineered surface and subsurface of CaTiO3 nanosheets on photocatalytic hydrogen evolution. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2020, 267: http://dx.doi.org/10.1016/j.apcatb.2019.118378.
[45] Feng, Siquan, Hemberger, Patrick, Bodi, Andras, Song, Xiangen, Yu, Tongpo, Jiang, Zheng, Liu, Yang, Ding, Yunjie. Preparation and regeneration of supported single-Ir-site catalysts by nanoparticle dispersion via CO and nascent I radicals. JOURNAL OF CATALYSIS[J]. 2020, 382: 347-357, http://dx.doi.org/10.1016/j.jcat.2019.12.040.
[46] Zhang, Xing, Sa, Rongjian, Yang, Shuai, Zhou, Feng, Jiang, Zheng, Wang, Ruihu. A non-carbon catalyst support upgrades the intrinsic activity of ruthenium for hydrogen evolution electrocatalysis via strong interfacial electronic effects. NANO ENERGY[J]. 2020, 75: http://dx.doi.org/10.1016/j.nanoen.2020.104981.
[47] Li, Yaguang, Wu, ZhongShuai, Lu, Pengfei, Wang, Xiao, Liu, Wei, Liu, Zhibo, Ma, Jingyuan, Ren, Wencai, Jiang, Zheng, Bao, Xinhe. High‐Valence Nickel Single‐Atom Catalysts Coordinated to Oxygen Sites for Extraordinarily Activating Oxygen Evolution Reaction. Advanced Science[J]. 2020, 7(5): n/a-n/a, https://doaj.org/article/d3c2da86f0a946a2a7bd0fdb14b37c70.
[48] Zhao, JiXiao, Chen, ChaoQiu, Xing, CaiHong, Jiao, ZhiFeng, Yu, MengTing, Mei, BingBao, Yang, Jie, Zhang, BaiYan, Jiang, Zheng, Qin, Yong. Selectivity Regulation in Au-Catalyzed Nitroaromatic Hydrogenation by Anchoring Single-Site Metal Oxide Promoters. ACS CATALYSIS[J]. 2020, 10(4): 2837-2844, https://www.webofscience.com/wos/woscc/full-record/WOS:000516887400045.
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[299] 王建强, 张硕, 姜政, 魏向军, 邹扬, 林鹤, 李丽娜, 高倩, 顾颂琦, 黄宇营. 上海光源XAFS线站及在材料化学中的应用. 11th Conference on Solid State Chemistry and Inorganic Synthesis Joint with 2th Dalton Transactions International Symposium Abstract Booknull. 2011, 2-, http://ir.sinap.ac.cn/handle/331007/12513.
[300] 顾俊俊, 邹杨, 魏向军, 刘平, 高倩, 于海生, 姜政, 黄宇营, 徐洪杰. BL14W1光束线XAFS实验站极低浓度数据采集系统. 核技术. 2011, 34(5): 341-344, http://lib.cqvip.com/Qikan/Article/Detail?id=37682760.
[301] Tian, Li, Yang, Qiuyun, Jiang, Zheng, Zhu, Yuan, Pei, Yan, Qiao, Minghua, Fan, Kangnian. Highly chemoselective hydrogenation of crotonaldehyde over Ag-In/SBA-15 fabricated by a modified "two solvents" strategy. CHEMICAL COMMUNICATIONS[J]. 2011, 47(21): 6168-6170, https://www.webofscience.com/wos/woscc/full-record/WOS:000290628000070.
[302] Li, XinGang, Dong, YanHua, Xian, Hui, Hernandez, Willinton Yesid, Meng, Ming, Zou, HongHu, Ma, AiJing, Zhang, TianYong, Jiang, Zheng, Tsubaki, Noritatsu, Vernoux, Philippe. De-NOx in alternative lean/rich atmospheres on La1-xSrxCoO3 perovskites. ENERGY & ENVIRONMENTAL SCIENCE[J]. 2011, 4(9): 3351-3354, http://dx.doi.org/10.1039/c1ee01726h.
[303] Peng, Mingfa, Li, Yang, Gao, Jing, Zhang, Duo, Jiang, Zheng, Sun, Xuhui. Electronic Structure and Photoluminescence Origin of Single-Crystalline Germanium Oxide Nanowires with Green Light Emission. JOURNAL OF PHYSICAL CHEMISTRY C[J]. 2011, 115(23): 11420-11426, https://www.webofscience.com/wos/woscc/full-record/WOS:000291339000013.
[304] Jiang, Baojiang, Tian, Chungui, Pan, Qingjiang, Jiang, Zheng, Wang, JianQiang, Yan, Wensheng, Fu, Honggang. Enhanced Photocatalytic Activity and Electron Transfer Mechanisms of Graphene/TiO2 with Exposed {001} Facets. JOURNAL OF PHYSICAL CHEMISTRY C[J]. 2011, 115(48): 23718-23725, https://www.webofscience.com/wos/woscc/full-record/WOS:000297446300010.
[305] 王倩, 邹杨, 姜政, 黄卫, 张硕, 魏向军, 王建强, 马静远, 吴国忠, 黄宇营, 徐洪杰. 同步辐射XANES方法对FeCl3水溶液的研究. 中国科学:物理学、力学、天文学. 2011, 41(1): 17-22, http://lib.cqvip.com/Qikan/Article/Detail?id=36683634.
[306] Mu, Rentao, Fu, Qiang, Xu, Hong, Zhang, Hui, Huang, Yuying, Jiang, Zheng, Zhang, Shuo, Tan, Dali, Bao, Xinhe. Synergetic Effect of Surface and Subsurface Ni Species at Pt-Ni Bimetallic Catalysts for CO Oxidation. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY[J]. 2011, 133(6): 1978-1986, http://dx.doi.org/10.1021/ja109483a.
[307] Qiao, Botao, Wang, Aiqin, Yang, Xiaofeng, Allard, Lawrence F, Jiang, Zheng, Cui, Yitao, Liu, Jingyue, Li, Jun, Zhang, Tao. Single-atom catalysis of CO oxidation using Pt-1/FeOx. NATURE CHEMISTRY[J]. 2011, 3(8): 634-641, http://dx.doi.org/10.1038/NCHEM.1095.
[308] Liu, Yusheng, Wu, Guozhong, Fu, Haiying, Jiang, Zheng, Chen, Shimou, Sha, Maolin. Immobilization and melting point depression of imidazolium ionic liquids on the surface of nano-SiOx particles. DALTON TRANSACTIONS[J]. 2010, 39(13): 3190-3194, http://www.irgrid.ac.cn/handle/1471x/393310.
[309] Zhang, Yanjie, Wang, Junhu, Yin, Jie, Zhao, Kunfeng, Jin, Changzi, Huang, Yuying, Jiang, Zheng, Zhang, Tao. Enhanced Catalytic Activities and Characterization of Ruthenium-Grafted Halogenous Hydroxyapatite Nanorod Crystallites. JOURNAL OF PHYSICAL CHEMISTRY C[J]. 2010, 114(39): 16443-16450, http://159.226.238.44/handle/321008/103315.
[310] He, Xiaoxia, Meng, Ming, He, Junjun, Zou, Zhiqiang, Li, Xingang, Li, Zhaoqiang, Jiang, Zheng. A potential substitution of noble metal Pt by perovskite LaCoO3 in ZrTiO4 supported lean-burn NOx trap catalysts. CATALYSIS COMMUNICATIONS[J]. 2010, 12(3): 165-168, http://dx.doi.org/10.1016/j.catcom.2010.09.016.
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科研活动

   
科研项目
( 1 ) 纳米结构的新型同步辐射表征技术及若干关键科学问题的研究, 参与, 国家任务, 2010-01--2014-01
( 2 ) 离子液体微观结构及Sr(II)萃取体系的同步辐射研究, 参与, 国家任务, 2011-01--2014-12
( 3 ) 室温离子液体的同步辐射XAFS方法研究 , 负责人, 国家任务, 2008-01--2010-12
( 4 ) 2. CO2加氢催化制甲醇过程研究, 负责人, 国家任务, 2013-01--2016-12
( 5 ) 5. 碳资源优化利用的纳米催化基础, 参与, 国家任务, 2013-01--2017-12
( 6 ) 高阶醇, 负责人, 其他任务, 2013-01--2015-01
( 7 ) 页岩微观结构的同步辐射研究, 负责人, 地方任务, 2014-01--2016-01
( 8 ) 上海光源线站工程, 参与, 国家任务, 2016-11--2022-11
( 9 ) 同步辐射原位技术研究Co基费托合成中的催化反应动力学行为, 负责人, 国家任务, 2018-01--2021-12
( 10 ) 硬X射线自由电子激光装置, 参与, 国家任务, 2018-04--2025-04
参与会议
(1)同步辐射谱学方法在能源催化中的应用   中国化学会第三十二届学术年会   2021-04-19
(2)同步辐射X射线谱学线站及方法   上海市化学化工学会无机化学专业委员会2020年度学术年会   2020-12-11
(3)同步辐射谱学方法在单原子催化中的应用   中科院上海分院-2020年第31期科学沙龙“原位催化研究的 进展及展望”   2020-11-02
(4)同步辐射X射线谱学应用及发展   香山科学会议第679次学术讨论会“单原子催化”   2020-10-14
(5)同步辐射X射线谱学在催化中的应用   中国科学院上海高等研究院第一届“高研交叉学科论坛”   2020-08-28
(6)同步辐射X射线谱学在能源催化中的应用   Green Energy & Environment(GEE)首场线上论坛   2020-05-20
(7)同步辐射X射线谱学在能源材料中的应用   第四届中国能源材料化学研讨会   2019-05-25
(8)Design and Characterization of Electrocatalysts with Atomic Precision    2019-04-11
(9)基于XAFS的谱学方法及其在纳米科学中的应用   中国化学会第31届学术年会   2018-05-05
(10)上海光源二期谱学线站及其应用   同步辐射谱学和成像实验技术应用讲习班   2017-08-17
(11)上海光源XAFS线站及其在工业催化中的应用   2017同步辐射X-射线吸收谱学实验与数据分析讲习班   2017-05-24
(12)上海光源运行情况汇报   合肥光源用户学术年会   2016-08-17
(13)X射线吸收谱学基本原理   硬、软X射线吸收谱学及应用研讨会暨讲习班   2015-08-10
(14)纳秒时间分辨 X 射线激发发光实验方法 在上海光源 BL14W1 实现   中国化学会第十一届全国发光分析学术研讨会   姜政 于海生   2015-04-25