基本情况
邹志刚,南京大学物理学院“长江学者奖励计划”特聘教授,江苏省纳米技术重点实验室主任,国家重点基础研究计划973项目首席科学家。2009年作为团队带头人入选教育部创新团队项目。1996年获日本东京大学理学博士。1996-2002年日本国家产业技术综合研究所(AIST)研究员。2003年至今为南京大学物理学院“长江学者奖励计划”特聘教授,江苏省纳米技术重点实验室主任,国家重点基础研究计划973项目首席科学家。2009年作为团队带头人入选教育部创新团队项目。担任Asia-materials(nature asia-pacific)杂志编委。
研究领域
材料物理及化学、太阳能转化和利用、光催化及能源材料
科研成果
首次发现了In0.9Ni0.1TaO4光催化材料并应用于光解水制氢,实现了将太阳能转化为化学能(Nature 414,625,2001)。该工作突破了传统的只能在紫外光下具有活性的第一代光催化材料体系,发展了一种全新的具有可见光活性的新型复杂氧化物催化体系。该项成果在国际上引起广泛关注。此后,将p-n结及异质结等概念引入光催化材料的研究, 成功开发了一系列新型材料体系。发表SCI论文200余篇,申请中国发明专利40多项,其中19项已获授权;此外还获得美国授权发明专利1项、日本授权发明专利2项。现主持国家973、863、国家自然科学基金重点项目、国家自然科学基金中日合作项目、科技部国际合作重大项目(中日JST-MOST)、教育部科学技术研究重大项目及江苏省高技术项目等多项科研项目。
论文发表
-
Yuan G, Qiankun D, Dayu W, Shaomang W,
Zhongyu L, Shicheng Y, Zhigang Z, et al. Distinct Promotion of PEC Water
Oxidation of Ta2O5/α-Fe2O3/Co-Ni PBA Via Coupling Ni 3d with O 2P.[J],
INORGANIC CHEMISTRY, 2025, 64(4): 2080-2095.
-
Chao L, Huan Y, Wen X, Chenxi G, Jingwen Y,
Jiaming L, Juan S, Yuxi S, Tao S, Zhigang Z, Qinfang Z, et al. Tuning
Interfacial Charge Transfer for Efficient Photodegradation of Tetracycline
Hydrochloride over Ti3c2/Bi12o17cl2 Schottky Heterojunction and Theoretical Calculations[J],
APPLIED SURFACE SCIENCE, 2025, 682
-
Haoqiang C, Yecheng L, Cheng D, Tianhao L,
Junyang Y, Wenguang T, Wa G, Yongcai Z, Yingfang Y, Xi Z, Yong Z, Zhigang Z, et
al. Spin Polarization-Boosting Ultrafast Carrier Dynamics and Exciton
Dissociation in Fe Nanoparticle-Loading Graphitic Carbon Nitride Toward
Efficient CO2 Photoreduction.[J], Angewandte Chemie (International ed in
English), 2025: e202425630.
-
Kai Z, Qiutong H, Zhe L, Yubin Z, Boye Z,
Haoqiang C, Dawei L, Lu W, Zhigang Z, Yong Z, et al. Hexagonal In2O3 Short
Nanorods Rich in O Vacancy-Defects Toward Promoting Highly Efficient
Photothermal CO2 Reduction into C2H5OH[J], CATALYSIS SCIENCE & TECHNOLOGY,
2025
-
Peiting H, Haoqiang C, Zhengdao L, Xinxin
L, Yong Y, Yongcai Z, Zhigang Z, Yong Z, et al. Crystal-Facet Modulated Pathway
of CO2 Photoreduction on Bi4NbO8Cl Nanosheets Boosting Production of
Value-Added Solar Fuels[J], CHEMICAL COMMUNICATIONS, 2025, 61(3): 548-551.
-
Weiping G, Ying Z, Hong-Hua C, Lingyun L,
Yan Y, Zhong-Zhen L, Zhigang Z, et al. B-Pb 3 P 2 S 8: A New Optical Crystal
with Exceptional Birefringence Effect[J], CHINESE CHEMICAL LETTERS, 2025, 36(2)
-
Heng Z, Wenguang T, Xi Z, Yong Z, Zhigang
Z, et al. Three-dimensional Nanosheet Glass with Fluid-Induced Switchable Haze
Obtained by Hydrothermal Method[J], JOURNAL OF NON-CRYSTALLINE SOLIDS, 2025,
650
-
Xue D, Zichan Z, Chengyuan L, Junchuan S,
Yongcai Z, Chen H, Wenguang T, Long Z, Zhixin H, Zhigang Z, Lu W, et al.
Stefan-Boltzmann Water Catalyzed Propane Dehydrogenation.[J], ANGEWANDTE CHEMIE-INTERNATIONAL
EDITION, 2025: e202424800.
-
Minyue Z, Jianyong F, Zhaosheng L, Zhigang
Z, et al. Lattice Water Fuels Acidic Water Oxidation[J], Science China
Chemistry, 2024, 67(7): 2132-2133.
-
Yu D, Fakang X, Mengfei L, Rongxian L,
Wangxi L, Yuandong Y, Shicheng Y, Zhigang Z, et al. Continuous Strain Tuning of
Oxygen Evolution Catalysts with Anisotropic Thermal Expansion[J], Nature
Communications, 2024, 15(1)
-
Xue D, Wenxuan L, Junhua Z, Lu W, Zhigang
Z, et al. Photothermal CO2 Catalysis Toward the Synthesis of Solar Fuel: from
Material and Reactor Engineering to Techno-Economic Analysis[J], Advanced
Materials, 2024, 37(2): e2312093.
-
Yuandong Y, Jiaying Z, Ruyi W, Shicheng Y,
Zhigang Z, et al. Trivalent Nickel-Catalyzing Electroconversion of Alcohols to
Carboxylic Acids.[J], Journal of the American Chemical Society, 2024, 146(7):
4814-4821.
-
Yuandong Y, Ruyi W, Qian Z, Jiaying Z,
Weichang H, Shicheng Y, Zhigang Z, et al. Nonredox Trivalent Nickel Catalyzing
Nucleophilic Electrooxidation of Organics[J], Nature communications, 2023,
14(1)
-
Xinxin L, Wenguang T, Yong Z, Zhigang Z, et
al. Effects of Electrolyte Ionic Species on Electrocatalytic Reactions:
Advances, Challenges, and Perspectives[J], Advanced energy materials, 2023,
13(27)
-
Lei L, Yu C, Zhiping L, Shicheng Y, Guanjun
Q, Zhigang Z, et al. Multifunctional Au/Hydroxide Interface Toward Enhanced C-C
Coupling for Solar-Driven CO2 Reduction into C2H6[J], Inorganic chemistry,
2023, 62(6): 2934-2941.
-
Lijun X, Yingjie H, Yong Y, Qinghua D,
Zheng T, Panjie L, Jinyou S, Xiaoyue Z, Tianyu W, Xiaoyong X, Nan Y, Yong Z,
Wei D, Zhigang Z, et al. Electron Pump Strengthened Facet Engineering: Organic
Half-Metallic C(CN)3 Enclosed (100) Facet Exposed WO3 for Efficient and
Selective Photocatalytic Nitrogen Fixation[J], Applied Catalysis
B-environmental, 2022, 317: 121660-121660.
-
Chao L, Yulong Z, Jiaxin W, Hailu D,
Chengjian M, Qinfang Z, Zhigang Z, et al. Ag-Pd Alloy Decorated ZnIn2S4
Microspheres with Optimal Schottky Barrier Height for Boosting
Visible-Light-driven Hydrogen Evolution[J], Journal of materials science &
technology, 2022, 114: 81-89.
-
Duanduan L, Mengfei L, Depei L, Shicheng Y,
Wei Z, Lunyong Z, Zhigang Z, et al. Heat‐Triggered Ferri‐to‐Paramagnetic
Transition Accelerates Redox Couple‐Mediated
Electrocatalytic Water Oxidation[J], Advanced functional materials, 2022,
32(32)
-
Chao D, Dandan W, Dong L, Hua L, Yusheng L,
Shuzi H, Tomah S, Taizo M, Yong Z, Yingfang Y, Zhigang Z, Ruixiang W, Qing S,
et al. Over 15% Efficiency PbS Quantum‐Dot Solar Cells by
Synergistic Effects of Three Interface Engineering: Reducing Nonradiative Recombination
and Balancing Charge Carrier Extraction[J], Advanced energy materials, 2022,
12(35)
-
Jie Z, Zejin W, Jinyan S, Wenbo Z, Le Y,
Ying W, Zhigang Z, et al. Bay‐Monosubstitution with Electron‐Donating Group As an
Efficiently Strategy to Functionalize Perylene Imide Polymer for Enhancing
Photocatalytic Oxygen Evolution Activity[J], Advanced functional materials,
2022, 32(43)
-
Mingzhi C, Hongzheng D, Mengfan X,
Chunsheng Y, Pin W, Yanliang Y, Heng Z, Congping W, Yingfang Y, Wenjun L,
Zhigang Z, et al. Faradaic Junction and Isoenergetic Charge Transfer Mechanism
on Semiconductor/semiconductor Interfaces[J], Nature communications, 2021,
12(1)
-
Lu W, Ruyi W, Tianyang Q, Liuqing Y,
Qiutong H, Qing S, Xin Z, Yong Z, Zhigang Z, et al. Bismuth Vacancy-Induced
Efficient CO2 Photoreduction in BiOCl Directly from Natural Air: A Progressive
Step Toward Photosynthesis in Nature[J], Nano Letters, 2021, 21(24):
10260-10266.
-
Yong C, Yuanming Z, Guozheng F, Lizhu S,
Gan J, Huiting H, Shuxin O, Jinhua Y, Zhaosheng L, Zhigang Z, et al.
Cooperative Catalysis Coupling Photo-/Photothermal Effect to Drive Sabatier
Reaction with Unprecedented Conversion and Selectivity[J], Joule, 2021, 5(12):
3235-3251.