General

Chunmei Ding

Dalian Institute of Chemical Physics, Chinese Academy of Sciences
Email: cmding@dicp.ac.cn

Phone:   0411-84379698

Address: 457 Zhongshan Road, Shahekou District, Dalian, China.

 

Research Areas

1.Photoelectrocatalytic water splitting for hydrogen production

1) To study the effects of interfacial layers on the charge seperation, transfer and photoelectrochemical properties of photoelectrodes. 

2) To construct efficient photoelectrocatalytic water splitting systems.


2.Biomimetic electrocatalytic and photoelectrocatalytic production of value-added chemicals 

1) To explore and design biomimetic catalysts for CO2 reduction, nitrate reduction, C-N coupling, NADH regeneration etc.

3) To construct efficient photoelectrocatalytic systems for the production of value-added chemicals.

Education

2009-09--2015-07   Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Doctor's degree.
2005-09--2009-07   Central South University, Bachelor' degree.


Experience


Work Experience

2024-07~now,  Dalian Institute of Chemical Physics, Professor

2017-07--2024.07  Dalian Institute of Chemical Physics, Associate Professor

2015-07--2017-06  Dalian Institute of Chemical Physics, Asistant Professor

Publications

(1) Enhancing Performance of Photoanodes With a Dual-Redox Mediator for Photoelectrocatalytic Water Splitting, Adv. Energy Mater., 2026, corresponding author.

(2) Electrocatalytic CO2 Reduction to C2+ Products on CeO2 Modified CuO Catalyst, Catal. Sci. Technol., 2026, corresponding author.

(3) Electrocatalytic Nitrate Reduction to Ammonia with a Bifunctional Ni-Mo Alloy Catalyst, J. Mater. Chem. A, 2025, corresponding author.

(4) Electrocatalytic synthesis of methylamine from nitrate and carbon dioxide on a heterometallic polyphthalocyanine, Chem. Sci., 2025, corresponding author.

(5) Electrocatalytic Synthesis of Organonitrogen Compounds via C-N Coupling from NOx and Carbon Source, ChemCatChem, 2024, corresponding author.

(6) Synergy Between Metal and Molecular Catalysts for (Photo)electrocatalytic 1,4-NADH Regeneration, J. Phys. Chem. C, 2024, corresponding author.

(7) Promoting C-C Coupling for CO2 Reduction on Cu2O Electrocatalysts with Atomically Dispersed Rh Atoms, Chem. Commun., 2024, corresponding author.

(8) Amino Acid Synthesis through C-N Coupling between a-Ketoacids and Hydroxylamine from Nitrate Reduction, ACS Catal., 2024, corresponding author.

(9) Photoelectrocatalytic NADH Regeneration and Imine Hydrogenation, Sci. Sin. Chim., 2024, corresponding author.

(10) A Coupled System of Ni3S2 and Rh Complex with Biomimetic Function for Electrocatalytic 1,4-NAD(P)H Regeneration, J. Am. Chem. Soc., 2024, corresponding author.

(11) Simultaneous Improvemen t in Hole Storage and Interfacial Catalysis over Ni-Fe Oxyhydroxide Modified Tantalum Nitride Photoanodes, ACS Catal., 2023, co-first author.

(12) Boosting Electrocatalytic Nitrate Reduction to Ammonia via Promoting Water Dissociation, ACS Catal., 2023, corresponding author.

(13) Regioselective Reduction of NAD+ to 1,4-NADH with a Bioinspired Metal Sulfide Electrocatalyst, ChemCatChem, 2023, corresponding author.

(14) Electrocatalytic NAD+ Reduction via Hydrogen-Atom-Coupled Electron Transfer, Chemical Science, 2022, co-first author

(15) 光电催化分解水和还原CO2研究进展, Progress of photoelectrocatalytic water splitting and CO2 reduction, 科技导报, 2020, 1st author.

(16) Carbon nitride embedded with transition metals for selective electrocatalytic CO2 reduction, APPLIED CATALYSIS B-ENVIRONMENTAL, 2020, 1st author.

(17) Water Oxidation Catalysts for Artificial Photosynthesis, ADVANCED MATERIALS, 2019, co-first author.

(18) Mimicking the Key Functions of Photosystem II in Artificial Photosynthesis for Photoelectrocatalytic Water Splitting, JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2018, co-first author.

(19) Correction to photoelectrocatalytic water splitting: significance of cocatalysts, electrolyte, and interfaces (vol 7, pg 675, 2017), ACS CATALYSIS, 2017, 1st author.

(20) Photoelectrocatalytic Water Splitting: Significance of Cocatalysts, Electrolyte, and Interfaces, ACS CATALYSIS, 2017, 第 1 作者

(21) Substrate-electrode interface engineering by an electron-transport layer in hematite photoanode, ACS APPLIED MATERIALS & INTERFACES, 2016, 1st author.

(22) In situ electrodeposited indium nanocrystals for efficient co2 reduction to co with low overpotential, ACS CATALYSIS, 2016, 第 1 作者

(23) Abnormal Effects of Cations (Li+, Na+, and K+) on Photoelectrochemical and Electrocatalytic Water Splitting, JOURNAL OF PHYSICAL CHEMISTRY B, 2015, 1st author.

(24) Solar-to-hydrogen efficiency exceeding 2.5% achieved for overall water splitting with an all earth-abundant dual-photoelectrode, PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2014, 1st author.

(25) Visible light driven overall water splitting using cocatalyst/BiVO4 photoanode with minimized bias, PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2013, 1st author.

Patents

( 1 ) 2024117463822


( 2 ) 202510452460.6


( 3 )202410993783.1


( 4 ) 202311719747.8


( 5 ) 2022115764347


( 6 ) 202211340571.0


( 7 ) CN113058621B


( 8 ) CN108118358A


( 9 )  CN107012474A


( 10 ) CN104711627A

Students

现指导学生

赵淼  博士研究生  070304-物理化学