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丁韬
单位:合肥微尺度物质科学国家研究中心
地址:安徽省合肥市金寨路96号
邮编:230026
电话:18256986385
个人主页: https://faculty.ustc.edu.cn/dingtao/zh_CN/index.htm
 
个人简历 Personal resume
丁韬,中国科学技术大学特任研究员,博士生导师。1990年1月出生,安徽合肥人。2012年毕业于安徽师范大学化学与材料科学学院化学系获理学学士学位,2017年7月于中科大化学与材料科学学院无机化学专业获理学博士学位(导师:杨晴教授),2017年8月至2019年11月在中国科学院大连化学物理研究所吴凯丰研究员团队从事博士后研究,2019年12月加入中国科学技术大学姚涛教授团队。长期围绕能量转换和能源催化微观机制的重要科学问题开展研究工作。依托国内同步辐射和自由电子激光等先进光源大科学装置,发展了多种原位X射线吸收谱技术等。基于发展的原位吸收谱学平台,解析了原子级精确活性位点在能源催化反应状态下的局域原子和电子结构的演变机制;阐明了表面配体诱导的配位原子结构对小分子活化的调控机制。已在J. Am. Chem. Soc.、Angew. Chem. Int. Ed.、Nat. Commun.、Nano Lett.等著名学术期刊发表论文70余篇。曾入选中国科学院青年创新促进会会员(2022年)、中科大墨子杰出青年(2020年、2023年)。作为负责人承担国家自然科学基金委面上及青年项目、国家重点研发项目子课题等。
 
研究方向 Research direction
同步辐射技术;同步辐射X射线吸收谱;同步辐射原位多模态谱学;新型低维量子材料的电子结构研究;
能量转化微观机制;电催化CO2还原和能源小分子转化;
 
招生信息 Enrollment information
欢迎对能源催化及其物理化学机制感兴趣的同学积极报考
 
论文专著 The monograph
1) Coulomb Barrier for Sequential Two-Electron Transfer in a Nanoengineered Photocatalyst - Journal of the American Chemical Society - 2020
2) Dynamic Surface Reconstruction of Single-Atom Bimetallic Alloy under Operando Electrochemical Conditions - Nano Letters - 2020
3) Coulomb Barrier for Sequential Two-Electron Transfer in a Nanoengineered Photocatalyst - Journal of the American Chemical Society - 2020
4) Marcus inverted region of charge transfer from low-dimensional semiconductor materials - Nature Communications - 2021
5) Ligand assisted thermal atomization of palladium clusters: An inspiring approach for the rational design of atomically dispersed metal catalysts - Angewandte Chemie International Edition - 2023
6) In situ constructing atomic interface in ruthenium-based amorphous hybrid-structure towards solar hydrogen evolution - Nature Communications - 2023
7) Atomically precise dinuclear site active toward electrocatalytic CO2 reduction - Journal of the American Chemical Society - 2021
8) Highly efficient anion exchange membrane water electrolyzers via chromium-doped amorphous electrocatalysts - Nature Communications - 2024
9) Boosting Electrocatalytic Ammonia Synthesis via Synergistic Effect of Iron-Based Single Atoms and Clusters - Nano Letters - 2024
10) Dynamic Surface Reconstruction of Single-Atom Bimetallic Alloy under Operando Electrochemical Conditions - Nano Letters - 2020
11) Boosting Electrocatalytic Ammonia Synthesis via Synergistic Effect of Iron-Based Single Atoms and Clusters - Nano Letters - 2024
12) Marcus inverted region of charge transfer from low-dimensional semiconductor materials - Nature Communications - 2021
13) Marcus inverted region of charge transfer from low-dimensional semiconductor materials - Nature Communications - 2021
14) Coulomb Barrier for Sequential Two-Electron Transfer in a Nanoengineered Photocatalyst - Journal of the American Chemical Society - 2020
15) Dynamic Surface Reconstruction of Single-Atom Bimetallic Alloy under Operando Electrochemical Conditions - Nano Letters - 2020
16) Boosting Electrocatalytic Ammonia Synthesis via Synergistic Effect of Iron-Based Single Atoms and Clusters - Nano Letters - 2024
17) Highly efficient anion exchange membrane water electrolyzers via chromium-doped amorphous electrocatalysts - Nature Communications - 2024
18) Atomically precise dinuclear site active toward electrocatalytic CO2 reduction - Journal of the American Chemical Society - 2021
19) Ligand assisted thermal atomization of palladium clusters: An inspiring approach for the rational design of atomically dispersed metal catalysts - Angewandte Chemie International Edition - 2023
20) In situ constructing atomic interface in ruthenium-based amorphous hybrid-structure towards solar hydrogen evolution - Nature Communications - 2023
21) Dynamic Surface Reconstruction of Single-Atom Bimetallic Alloy under Operando Electrochemical Conditions - Nano Letters - 2020
22) Ligand assisted thermal atomization of palladium clusters: An inspiring approach for the rational design of atomically dispersed metal catalysts - Angewandte Chemie International Edition - 2023
23) Atomically precise dinuclear site active toward electrocatalytic CO2 reduction - Journal of the American Chemical Society - 2021
24) Highly efficient anion exchange membrane water electrolyzers via chromium-doped amorphous electrocatalysts - Nature Communications - 2024
25) Boosting Electrocatalytic Ammonia Synthesis via Synergistic Effect of Iron-Based Single Atoms and Clusters - Nano Letters - 2024
26) Dynamic Surface Reconstruction of Single-Atom Bimetallic Alloy under Operando Electrochemical Conditions - Nano Letters - 2020
27) Coulomb Barrier for Sequential Two-Electron Transfer in a Nanoengineered Photocatalyst - Journal of the American Chemical Society - 2020
28) Marcus inverted region of charge transfer from low-dimensional semiconductor materials - Nature Communications - 2021
29) Marcus inverted region of charge transfer from low-dimensional semiconductor materials - Nature Communications - 2021
30) Coulomb Barrier for Sequential Two-Electron Transfer in a Nanoengineered Photocatalyst - Journal of the American Chemical Society - 2020
31) In situ constructing atomic interface in ruthenium-based amorphous hybrid-structure towards solar hydrogen evolution - Nature Communications - 2023
32) Boosting Electrocatalytic Ammonia Synthesis via Synergistic Effect of Iron-Based Single Atoms and Clusters - Nano Letters - 2024
33) Highly efficient anion exchange membrane water electrolyzers via chromium-doped amorphous electrocatalysts - Nature Communications - 2024
34) Atomically precise dinuclear site active toward electrocatalytic CO2 reduction - Journal of the American Chemical Society - 2021
35) Ligand assisted thermal atomization of palladium clusters: An inspiring approach for the rational design of atomically dispersed metal catalysts - Angewandte Chemie International Edition - 2023
36) In situ constructing atomic interface in ruthenium-based amorphous hybrid-structure towards solar hydrogen evolution - Nature Communications - 2023
37) In situ constructing atomic interface in ruthenium-based amorphous hybrid-structure towards solar hydrogen evolution - Nature Communications - 2023
38) Ligand assisted thermal atomization of palladium clusters: An inspiring approach for the rational design of atomically dispersed metal catalysts - Angewandte Chemie International Edition - 2023
39) Atomically precise dinuclear site active toward electrocatalytic CO2 reduction - Journal of the American Chemical Society - 2021
40) Highly efficient anion exchange membrane water electrolyzers via chromium-doped amorphous electrocatalysts - Nature Communications - 2024
 
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