相关文献:
);(3)提出并从理论上确定“碳表面M元素对Pt的锚定效应”理论,发明了以巯基稳定Pt/CNTs催化剂的方法;(4)在国际上首次通过"NG分子结构—NG电导率—ORR催化活性"的关联,利用层状材料(LM)的层间限域效应和盐重结晶固形法宏量可控制备高活性位和特定形貌的纳米催化剂,以该材料为正极催化剂的质子交换膜燃料电池输出功率达600mW/cm2,为当时世界领先水平,为高效经济宏量制备纳米碳氮催化剂提供了崭新途径(该成果于2017年获重庆市自然科学一等奖);(5)在担任重庆大学化学化工学院院长期间,创建了“化学”,“化学工程与技术”两个一级学科博士点及“化学工程与技术”博士后流动站,在2018年软科世界一流学科排行榜中,重庆大学的“化学”和“化学工程与技术”分别进入世界201-300名和101-150名,并且“化学学科”成为全球化学科研机构ESI排名前0.28%学科。
积极参与投身到中国化学会的各项工作中,是中国化学会理事,作为会议主席,负责承办了化学会“第十六届全国电化学会议”(1400人,2011年10月,重庆),“第十九届全国催化大会” (3500人,2019年10月,重庆),作为33届中国化学年会33分会的召集人,负责2010年5月珠海化学会年会“基础电化学与电催化”分会的工作;参与撰写了“电化学学科发展战略研究”报告,针对燃料电池电催化剂和膜电极提出了重点发展方向建议和战略布局建议;积极参加了“电化学科学与技术前沿论坛”,“电化学能源关键科学问题”等研讨会,提出多孔电极/电解质中的非连续、非线性界面是导致表面产生超激化现象和导致多孔电极催化效率差异化的根源。
代表性成果
1.Jinxia Jiang, Wei Ding*, Wei Li, Zidong Wei*, Freestanding Single-Atom-Layer Pd-Based catalysts: Oriented Splitting of Energy Bands for Unique Stability and Activity, Chem, 2019, DOI: 10.1016/j.chempr.2019.11.003;
2.Jia Li, Siguo Chen*, Na Yang, Mingming Deng, Shumaila Ibraheem, Jianghai Deng, Jing Li, Li Li*, Zidong Wei*, Ultrahigh-loading Zn Single-atom Catalyst for Highly Efficient Oxygen Reduction Reaction in both Acidic and Alkaline Media, Angew. Chem. Int. Ed. 2019, 58, 7035-7039.
3.Tayyaba Najam, Syed Shoaib Ahmad Shah, Wei Ding*, Jinxia Jiang, Jia Li, Yao Wang, Li Li, Zidong Wei*, An Efficient Anti‐poisoning catalyst against SOx, NOx and POx: P, N doped Carbon for Oxygen Reduction in Acidic Media, Angew. Chem. Int. Ed. 2018, 57(46), 15101-15106.
4.Qingmei Wang, Siguo Chen,* Feng Shi, Ke Chen, Yao Nie, Yao Wang, Rui Wu, Jia Li, Yun Zhang, Wei Ding, Yang Li, Li Li,* and Zidong Wei*, Structural Evolution of Solid Pt Nanoparticles to a Hollow PtFe Alloy with a Pt-Skin Surface via Space-Confined Pyrolysis and the Nanoscale Kirkendall Effect. Adv. Mater. 2016, 28, 10673–10678.
5.Wen-Jie Jiang, Lin Gu, Li Li, Yun Zhang, Xing Zhang, Lin-Juan Zhang, Jian-Qiang Wang, Jin-Song Hu*, Zidong Wei*, and Li-Jun Wan*, Understanding the High Activity of Fe–N–C Electrocatalysts in Oxygen Reduction: Fe/Fe3C Nanoparticles Boost the Activity of Fe–Nx, J. Am. Chem. Soc., 2016, 138 (10), 3570–3578.
6.Guangping Wu, Jun Wang, Wei Ding,* Yao Nie, Li Li,* Xueqiang Qi, Siguo Chen, and Zidong Wei*, A Strategy to Promote the Electrocatalytic Activity of Spinels for Oxygen Reduction by Structure Reversal, Angew. Chem. Int. Ed. 2016, 55(4), 1340-1344.
7.Wei Ding, Li Li, Kun Xiong, Yao Wang, Wei Li, Yao Nie, Siguo Chen, Xueqiang Qi, Zidong Wei*, Shape Fixing via Salt Recrystallization: A Morphology-Controlled Approach to Convert Nano-structured Polymer to Carbon Nanomaterial as a High Active Catalyst for Oxygen Reduction Reaction, J. Am. Chem. Soc., 2015, 137 (16), 5414–5420.
8.Yao Nie, Li Li* and Zidong Wei*, Recent advancements in Pt and Pt-free catalysts for oxygen reduction reaction, Chem Soc Rev, 2015, 44 (8), 2168 -2201.
9.Wei Ding, Zidong Wei,* Siguo Chen, Xueqiang Qi, Tao Yang, Jinsong Hu, Dong Wang, Li-Jun Wan,* Shahnaz Fatima Alvi, and Li Li, Space-Confinement-Induced Synthesis of Pyridinic- and Pyrrolic-Nitrogen-Doped Graphene for the Catalysis of Oxygen Reduction. Angew. Chem. Int. Ed. 2013, 52 (45), 11755-11759.
10.Siguo Chen, Zidong Wei*, XueQiang Qi, Lichun Dong, Yu-Guo Guo, Li-Jun Wan,*, Zhigang Shao, and Li Li,Nanostructured Polyaniline-Decorated Pt/C@PANI Core−Shell Catalyst with Enhanced Durability and Activity,J. Am. Chem. Soc. 2012, 134, 13252-13255.
论文著作:
[1] Mingming Deng, Mengting Li, Shangkun Jiang, Yao Nie, Li Li, and Zidong Wei,Interfacial Water Enrichment and Reorientation on Pt/C Catalysts Induced by Metal Oxides Participation for Boosting the Hydrogen Evolution Reaction, J. Phys. Chem. Lett. 2022, 13, 1069−1076
[2] Na Yang, Lanlan Peng, Li Li, Jing Li, Qiang Liao,d Minhua Shao and Zidong Wei Theoretical probing possible degradation mechanisms of FeNC catalyst during oxygen reduction reaction, Chemical Science, 2021, 12, 12476 - 12484
[3] Zhou Yuanyuan, Xie Zhenyang, Jiang Jinxia, Wang Jian, Song Xiaoyun, He Qian, Ding Wei, Wei Zidong, Lattice-confined Ru clusters with high CO tolerance and activity for the hydrogen oxidation reaction,,Nature Catalysis 2020, 3, 454–462
[4] Peng Lishan, Wei Zidong, Catalyst Engineering for Electrochemical Energy Conversion from Water to Water: Water Electrolysis and the Hydrogen Fuel Cell, Engineering 2020, 6, 653-679.
[5] Gan Ruiyi, Yang Na, Dong Qin, Fu Na, Wu Rui, Li Cunpu, Liao Qiang, Li Jing, Wei Zidong. Enveloping ultrathin Ti 3 C 2 nanosheets on carbon fibers: a high-density sulfur loaded lithium–sulfur battery cathode with remarkable cycling stability, J. Mater. Chem. A, 2020, 8(15): 7253-7260.
[6] Zeng Lingping, He Qian, Liao Yunchuan, Kuang Shangyi, Wang Jianchuan, Ding Wei, Liao Qiang, Wei Zidong. Anion Exchange Membrane Based on Interpenetrating Polymer Network with Ultrahigh Ion Conductivity and Excellent Stability for Alkaline Fuel Cell, Research, 2020, ,4794706.
[7] Lishan Peng, Mansheng Liao, Xingqun Zheng, Yao Nie, Ling Zhang, Miwjie Wang, Rui Xiang, Jian Wang, Li Li, and Zidong Wei, Accelerated Alkaline Hydrogen Evolution on M(OH)x/M-MoPOx (M = Ni, Co, Fe, Mn) Electrocatalysts by Coupling Water Dissociation and Hydrogen Ad-Desorption Steps, Chemical Science, 2020, 11, 2487 - 2493
[8] Jinxia Jiang, Wei Ding, Wei Li and Zidong Wei, Freestanding Single-Atom-Layer Pd-Based Catalysts: Oriented Splitting of Energy Bands for Unique Stability and Activity, Chem, 2020, 6, 431–447.
[9] Huang Xun, Zhang Ling, Li Cunpu, Tan Lianqiao, and Wei Zidong. High Selective Electrochemical Hydrogenation of Cinnamaldehyde to Cinnamyl Alcohol on RuO2-SnO2-TiO2/Ti Electrode, ACS Catal., 2019, 12: 11307-11316.
[10] Xiaohong Xie, Miao Song, Luguang Wang, Mark H. Engelhard, Langli Luo, Andrew Miller, Yayun Zhang, Lei Du, Huilin Pan, Zimin Nie, Yuanyuan Chu, Luis Estevez, Zidong Wei, Hong Liu, Chongmin Wang, Dongsheng Li, Yuyan Shao.Electrocatalytic hydrogen evolution in neutral pH solutions: dual phase synergy, ACS Catal., 2019,9,9,8712-8718.
[11] Jia Li, Siguo Chen, Na Yang, Mingming Deng, Shumaila Ibraheem, Jianghai Deng, Jing Li, Li Li, Zidong Wei, Ultrahigh‐loading Zn Single‐atom Catalyst for Highly Efficient Oxygen Reduction Reaction in both Acidic and Alkaline Media, Angew. Chem. Int. Ed. 2019, 58, 7035-7039.
[12] Jin-Cheng Li, Zidong Wei, Dong Liu, Dan Du, Yuehe Lin, Minhua Shao, Dispersive Single-Atom Metals Anchored on Functionalized Nanocarbons for Electrochemical Reactions, Top Curr. Chem., 2019, 377: 4. DOI:10.1007/s41061-018-0229-9
[13] Lishan Peng, Jingjun Shen, Xingqun Zheng, Rui Xiang, Mingming Deng, Zhanxin Mao, Zhiping Feng, Ling Zhang, Li Li, Zidong Wei, Rationally design of monometallic NiO-Ni3S2/NF heteronanosheets as bifunctional electrocatalysts for overall water splitting, J. Catal., 2019, 369: 345-351.
[14] Min Jie Wang, Zhan Xin Mao, Lu Liu, Lishan Peng, Na Yang, Jianghai Deng, Wei Ding, Jing Li, and Zidong Wei, Preparation of Hollow Nitrogen Doped Carbon via Stresses Induced Orientation Contraction, Small, 2018, 14, 1804183.
[15] Qin Dong, Runping Shen, Cunpu Li, Ruiyi Gan, Xiaotong Ma, Jianchuan Wang, Jing Li, Zidong Wei, Construction of Soft Base Tongs on Separator to Grasp Polysulfides from Shuttling in Lithium–Sulfur Batteries, Small, 2018, 14, 1804277.
[16] Tayyaba Najam, Syed Shoaib Ahmad Shah, Wei Ding, Jinxia Jiang, Jia Li, Yao Wang, Li Li, Zidong Wei, An Efficient Anti‐poisoning catalyst against SOx, NOx and POx: P, N doped Carbon for Oxygen Reduction in Acidic Media, Angew. Chem. Int. Ed. 2018, 57, 15101.
[17] Lishan Peng, Zidong Wei, Recent progress of meso-science in electrocatalytic material design for hydrogen energy conversion, Particuology, 48(2020)19-33.
[18] Lishan Peng, Xingqun Zheng, Li Li, Ling Zhang, Na Yang, Kun Xiong, Hongmei Chen, Jing Li, Zidong Wei, Chimney Effect of the Interface in Metal Oxide/Metal Composite Catalysts on the Hydrogen Evolution Reaction, Appl. Catal. B-Environ., 2019, 245, 122-129。
[19] Na Yang, Li Li, Jing Li, Wei Ding and Zidong Wei, Modulating the Oxygen Reduction Activity of Heteroatom-doped Carbon Catalysts via the Triple Effect: Charge, Spin Density and Ligand effect, Chemical Science, 2018, 9, 5795-5804.
[20] Huaixin Wang, Na Yang, Wei Li, Wei Ding, Ke Chen Jing Li, Li Li, Jianchuan Wang, Jinxia Jiang, Fengqiu Jia, and Zidong Wei, Understanding the Roles of Nitrogen Configurations in Hydrogen Evolution: Trace Atomic Cobalt Boosts the Activity of Planar Nitrogen-Doped Graphene, ACS Energy Lett., 2018, 3, 1345-1352.
[21] Yudong Gong, Wei Ding, Zhipeng Li, Rui Su, Xiuling Zhang, Jian Wang, Jigang Zhou, Zhiwei Wang, Yihua Gao, Shaoqing Li, Pengfei Guan, Zidong Wei, and Chunwen Sun, Inverse Spinel Cobalt−Iron Oxide and N‑Doped Graphene Composite as an Efficient and Durable Bifuctional Catalyst for Li−O2 Batteries, ACS Catal. 2018, 8, 4082−4090.
[22] Min Jie Wang, Tao Zhao, Wei Luo, Zhan Xin Mao, Siguo Chen, Wei Ding, Yonghui Deng, Wei Li, Jing Li, Zidong Wei, Quantified Mass Transfer and Superior Antiflooding Performance of Ordered Macro-Mesoporous Electrocatalysts, AIChE J., 64: 2881-2889.
[23] Li Jing, Li Li, Minjie Wang, Jianchuan Wang and Zidong Wei, Alloys with Pt-skin or Pt-rich Surface for Electrocatalysis, Curr. Opin. Chem. Eng., 2018, 20, 1-8.
[24] Xingqun Zheng, Lishan Peng,‡ Li Li, Na Yang, Yanjun Yang, Jing Li, Jianchuan Wang and Zidong Wei, Role of non-metallic atoms in enhancing the catalytic activity of Nickel-based compounds for hydrogen evolution reaction, Chemical Science, 2018 , 9 (7) :1822
[25] Lishan Peng, Jun Wang, Yao Nie, Kun Xiong, Yao Wang, Ling Zhang, Ke Chen, Wei Ding, Li Li, and Zidong Wei, Dual-Ligand Synergistic Modulation: A Satisfactory Strategy for Simultaneously Improving the Activity and Stability of Oxygen Evolution Electrocatalysts, ACS Catal., 2017, 7, 8184–8191.
[26] Wang Wang, Wenhui Chen, Peiyu Miao, Jin Luo, Zidong Wei, and Shengli Chen, NaCl Crystallites as Dual-Functional and Water-Removable Templates To Synthesize a Three-Dimensional Graphene-like Macroporous Fe-N‑C Catalys,. ACS Catal., 2017, 7, 6144−6149.
[27] Na Yang, Xingqun Zheng, Li Li, Jing Li, and Zidong Wei. Influence of Phosphorus Configuration on Electronic Structure and Oxygen Reduction Reactions of Phosphorus-Doped Graphene, J. Phys. Chem. C, 2017, 121 (35), 19321–19328.
[28] 王俊,李莉,魏子栋,不同氮掺杂石墨烯氧还原反应活性的密度泛函理论研究, 物理化学学报,2016,32(1),321–328.
[29] Jun Wang, Dingfang Liu, Li Li, Xueqiang Qi, Kun Xiong, Wei Ding, Siguo Chen, and Zidong Wei. Origin of the Enhanced Catalytic Activity of PtM/Pd (111) with Doped Atoms Changing from Chemically Inert Au to Active Os, J. Phys. Chem. C, 2017, 121, 8781−8786.
[30] Qingmei Wang, Siguo Chen, Feng Shi, Ke Chen, Yao Nie, Yao Wang, Rui Wu, Jia Li, Yun Zhang, Wei Ding, Yang Li, Li Li, and Zidong Wei, Structural Evolution of Solid Pt Nanoparticles to a Hollow PtFe Alloy with a Pt-Skin Surface via Space-Confined Pyrolysis and the Nanoscale Kirkendall Effect, Adv. Mater. 2016, 28, 10673–10678.
[31] Wen-Jie Jiang, Lin Gu, Li Li, Yun Zhang, Xing Zhang, Lin-Juan Zhang, Jian-Qiang Wang, Jin-Song Hu, Zidong Wei, and Li-Jun Wan, Understanding the High Activity of Fe–N–C Electrocatalysts in Oxygen Reduction: Fe/Fe3C Nanoparticles Boost the Activity of Fe–Nx, J. Am. Chem. Soc., 2016, 138 (10), 3570–3578.
[32] Guangping Wu, Jun Wang, Wei Ding, Yao Nie, Li Li, Xueqiang Qi, Siguo Chen, and Zidong Wei, A Strategy to Promote the Electrocatalytic Activity of Spinels for Oxygen Reduction by Structure Reversal, Angew. Chem. Int. Ed. 2016, 55(4), 1340-1344.
[33] Wei Li, Wei Ding, Guangping Wu, Jianhua Liao, NieYao, Xueqiang Qi, Li Li, Siguo Chen, Zidong Wei, Cobalt modified two-dimensional polypyrrole synthesized in a flat nanoreactor for the catalysis of oxygen reduction, Chem. Eng. Sci. 135 (2015): 45-51.
[34] Jun Wang, Dingfang Liu, Xueqiang Qi, Kun Xiong, Li Li, Zidong Wei, Insight into the effect of CaMnO3 support on the catalytic performance of platinum catalysts, Chem. Eng. Sci. 135 (2015): 179-186
[35] Li Li , Xianghong Feng, Yao Nie , Siguo Chen, Feng Shi , Kun Xiong, Wei Ding, XueQiang Qi , Jinsong Hu , Zidong Wei , Li-Jun Wan, and Meirong Xia, Insight into the effect of oxygen vacancy concentration on the catalytic performance of MnO2, ACS Catal., 2015, 5 (8), 4825–4832.
[36] Rong Li, Zidong Wei, and Xinglong Gou, Nitrogen and Phosphorus Dual-doped Graphene/Carbon Nanosheets as Bifunctional Electrocatalysts for Oxygen Reduction and Evolution, ACS Catal., 2015, 5, 4133-4142.
[37] 谢小红,魏子栋, 通过载体提高燃料电池催化剂的稳定性,电化学,21(2015)3: 221-233.
[38] Ding, Wei; Li, Li; Xiong, Kun; Wang, Yao; Li, Wei; Nie, Yao; Chen, Siguo; Qi, XueQiang; Wei, Zidong, Shape Fixing via Salt Recrystallization: A Morphology-Controlled Approach to Convert Nano-structured Polymer to Carbon Nanomaterial as a High Active Catalyst for Oxygen Reduction Reaction, J. Am. Chem. Soc., 2015, 137 (16), 5414–5420.
[39] Lin Guo, Wen-Jie Jiang, Yun Zhang, Jin-Song Hu, Zi-Dong Wei, and Li-Jun Wan, Embedding Pt Nanocrystals in N‑Doped Porous Carbon/Carbon Nanotubes toward Highly Stable Electrocatalysts for the Oxygen Reduction Reaction, ACS Catal. 2015, 5, 2903−2909.
[40] Yao Nie, Li Li and Zidong Wei, Recent advancements in Pt and Pt-free catalysts for oxygen reduction reaction, Chem Soc Rev, 2015, 44 (8), 2168 -2201.
[41] 李莉, 薛云, 夏美荣, 陈四国, 魏子栋. 聚苯胺包覆Pt/C催化剂的电子结构与催化活性的密度泛函研究. 中国科学 化学, 2013, 43(11): 1566-1571.
[42] Wei Ding, Zidong Wei, Siguo Chen, Xueqiang Qi, Tao Yang, Jinsong Hu, Dong Wang, Li-Jun Wan, Shahnaz Fatima Alvi, and Li Li, Space-Confinement-Induced Synthesis of Pyridinic- and Pyrrolic-Nitrogen-Doped Graphene for the Catalysis of Oxygen Reduction, Angew. Chem. Int. Ed. 2013, 52 (45), 11755-11759.
[43] Meirong Xia, Wei Ding, Kun Xiong, Li Li, Xueqiang Qi, Siguo Chen, Baoshan Hu, Zidong Wei, Anchoring effect of exfoliated-montmorillonite-supported Pd catalyst for the oxygen reduction reaction, J. Phys. Chem. C, 2013, 117, 10581-10588.
[44] Siguo Chen, Zidong Wei, XueQiang Qi, Lichun Dong, Yu-Guo Guo, Lijun Wan,, Zhigang Shao, and Li Li,Nanostructured Polyaniline-Decorated Pt/C@PANI Core−Shell Catalyst with Enhanced Durability and Activity,J. Am. Chem. Soc. 2012, 134, 13252-13255.
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