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中山大学深圳校区材料学院导师教师师资介绍简介-司锐

本站小编 Free考研考试/2021-05-15



司锐

材料学院 教授



电子邮件
sirui@mail.sysu.edu.cn



教育背景2001.07,北京大学,材料化学,理学学士学位
2006.07,北京大学,无机化学,理学博士学位
工作履历2006.07-2009.12 美国Tufts大选化学与生物工程系 博士后
2009.12-2012.12?美国Brookhaven国家实验室化学系 研究助理
2013.01-2018.09?中国科学院上海应用物理研究所 研究员 博士研究生导师
2018.10-2020.06?中国科学院上海高等研究院 研究员 博士研究生导师
2020.06-至今 中山大学材料学院 教授 博士研究生导师
学术成果【学术表现】研究方向包括金属及其氧化物亚纳米团簇催化材料、同步辐射X射线吸收精细结构谱学原位表征技术等。长期围绕多相催化中负载型纳米/亚纳米催化材料的活性物种及“构效关系”关键科学问题,依托上海同步辐射光源先进X射线表征平台并结合其技术特色,着重建立与发展适用于催化研究的原位X射线吸收精细结构谱学(XAFS)实验装置与方法,探索并指认了负载型金属(Au, Pt, Rh, Ru, Co, Ni)与金属氧化物(CuOx, FeOx, CoOx, NiOx)催化剂在不同反应中的活性物种。这一方法已成功应用于搭建不同温度和气体组成下的原位XAFS气固相催化反应装置,以及不同电解液和气氛下的原位XAFS液相电催化反应装置,发展了针对小尺寸(单原子、原子簇等)催化活性物种的近邻配位结构精确解析方法,特别是在原位反应条件下获取催化材料的构效关系。
近五年来在包括Nat. Catal., Nat. Commun., J. Am. Chem. Soc., Adv. Mater.,Angew. Chem. Int. Ed., Nano Lett., ACS Catal., Appl. Catal. B等杂志发表论文40余篇,其中影响因子>10的25篇,他引600余次。承担国家自然科学基金面上项目、中科院战略性先导A纳米专项子课题、中科院大科学中心高端用户项目等基金项目近1000万元。
【主要论著】1. Yu-Chen Hao, Yu Guo, Li-Wei Chen, Miao Shu, Xin-Yu Wang, Tong-An Bu, Wen-Yan Gao, Nan Zhang, Xin Su, Xiao Feng, Jun-Wen Zhou, Bo Wang, Chang-Wen Hu, An-Xiang Yin*, Rui Si*, Ya-Wen Zhang*, Chun-Hua Yan*, “Promoting nitrogen electroreduction to ammonia with bismuth nanocrystals and potassium cations in water”, Nat. Catal., 2019, 2, 448-456.
2. Yi-Zhen Chen, Hong-Liang Li, Wang-Hui Zhao, Wen-Bo Zhang, Jia-Wei Li, Wei Li, Xu-Sheng Zheng, Wen-Sheng Yan, Wen-Hua Zhang, Jun-Fa Zhu, Rui Si*, Jie Zeng*, “Optimizing reaction paths for methanol synthesis from CO2?hydrogenation via metal-ligand cooperativity”, Nat. Commun.,?2019,?10, 1885.
3. Li-Wen Guo, Pei-Pei Du, Xin-Pu Fu, Chao Ma*, Jie Zeng, Rui Si*, Yu-Ying Huang, Chun-Jiang Jia*, Ya-Wen Zhang & Chun-Hua Yan, “Contributions of distinct gold species to catalytic reactivity for carbon monoxide oxidation”, Nat. Commun.,?2016,?7, 13481.
4. Xin-Pu Fu, Li-Wen Guo, Wei-Wei Wang, Chao Ma, Chun-Jiang Jia*, Ke Wu, Rui Si*, Ling-Dong Sun, Chun-Hua Yan*, “Direct identification of active surface species for the water?gas shift reaction on a gold?ceria catalyst”, J. Am. Chem. Soc.,?2019,?141, 4613-4623.
5. Ting Zhang, Di Zhang, Xing-Hua Han, Ting Dong, Xin-Wen Guo, Chun-Shan Song, Rui Si*, Wei Liu, Yue-Feng Liu*, Zhong-Kui Zhao*, “Preassembly strategy to fabricate porous hollow carbonitride spheres inlaid with single Cu?N3?sites for selective oxidation of benzene to phenol”, J. Am. Chem. Soc.,?2018,?140, 16936-16940.
6. Hong-Wen Huang, Kan Li, Zhao Chen, Lai-Hao Luo, Yu-Qian Gu, Dong-Yan Zhang, Chao Ma, Rui Si*, Jin-Long Yang, Zhen-Meng*, Peng, Jie Zeng*, “Achieving remarkable activity and durability toward oxygen reduction reaction based on ultrathin Rh-doped Pt nanowires”, J. Am. Chem. Soc.,?2017,?139, 8152-8159.
7. Xiao Cai, Govindarajan Saranya, Kang-Qi Shen, Ming-Yang Chen*, Rui Si*, Wei-Ping Ding, Yan Zhu*, “Reversible switching of catalytic activity by shuttling an atom into and out of gold nanoclusters”, Angew. Chem. Int. Ed.,?2019,?58, 9964-9968.
8. Xue-Peng Yin, Hong-Juan Wang, Miao Shu, Rui Si*, Xiu-Li Lu*, Shang-Feng Tang, Tong-Bu Lu*, "Engineering the coordination environment of single-atom Pt anchored on graphdiyne for optimizing electrocatalytic hydrogen evolution", Angew. Chem. Int. Ed., 2018, 57, 9382-9386.
9. Liang-Bing Wang, Hong-Liang Li, Wen-Bo Zhang, Xiao Zhao, Jian-Xiang Qiu, Ao-Wen Li, Xu-Sheng Zheng, Zhen-Peng Hu*, Rui Si*, Jie Zeng*, “The highest occupied state of Rh single atoms controls the catalytic properties towards ammonia borane hydrolysis”, Angew. Chem. Int. Ed.,?2017,?56, 4712-4718.
10. Yu-Han Peng, Zhi-Gang Geng, Song-Tao Zhao, Liang-Bing Wang, Hong-Liang Li, Xu Wang, Xu-Sheng Zheng, Jun-Fa Zhu, Zhen-Yu Li*, Rui Si*, Jie Zeng*, “Pt single atoms embedded in the surface of Ni nanocrystals as highly active catalysts for selective hydrogenation of nitro compounds”, Nano Lett.,?2018,?18, 3785-3791.
11. Zhi-Gang Geng, Yan Liu, Xiang-Dong Kong, Pai Li, Zhong-Yu Liu, Jun-Jie Du, Miao Shu, Rui Si*, Jie Zeng*, “Achieving a record-high yield rate of 120.9 μgNH3?mg-1cat.?h-1?for N2?electrochemical reduction over Ru single-atom catalysts”, Adv. Mater., 2018, 30, **.
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奖励与荣誉中国科学院“****”(2014年获得择优支持)







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