Ge Chen

About Ge Chen

Ge Chen, With an exceptional h-index of 30 and a recent h-index of 23 (since 2020), a distinguished researcher at Beijing University of Technology, specializes in the field of Catalysis.

His recent articles reflect a diverse array of research interests and contributions to the field:

Light-Induced Variation of Lithium Coordination Environment in g-C3N4 Nanosheet for Highly Efficient Oxygen Reduction Reactions

In situ confined synthesis of interlayer-riveted carbon shell encapsulated PdZnBi alloy as highly active and durable oxygen reduction reaction catalyst

Coordination environment dominated catalytic selectivity of photocatalytic hydrogen and oxygen reduction over switchable gallium and nitrogen active sites

Recent advances in ambient electrochemical methane conversion to oxygenates using metal oxide electrocatalysts

Optimizing the binding of the* OOH intermediate via axially coordinated Co-N5 motif for efficient electrocatalytic H2O2 production

Tailoring the d-band center of Ni on a dual-single-atom Ni–ZnNC catalyst for efficient H2O2 production

Monodispersed aluminum in carbon nitride creates highly efficient nitrogen active sites for ultra-high hydrogen peroxide photoproduction

Improving photocatalytic hydrogen production via ultrafine-grained precipitates formed nearby surface defects of NiFe-LDH nanosheets

Ge Chen Information

University

Position

___

Citations(all)

3391

Citations(since 2020)

1930

Cited By

1977

hIndex(all)

30

hIndex(since 2020)

23

i10Index(all)

55

i10Index(since 2020)

42

Email

University Profile Page

Google Scholar

Ge Chen Skills & Research Interests

Catalysis

Top articles of Ge Chen

In situ confined synthesis of interlayer-riveted carbon shell encapsulated PdZnBi alloy as highly active and durable oxygen reduction reaction catalyst

Journal of Materials Chemistry A

2024

Coordination environment dominated catalytic selectivity of photocatalytic hydrogen and oxygen reduction over switchable gallium and nitrogen active sites

Journal of Materials Chemistry A

2024

Recent advances in ambient electrochemical methane conversion to oxygenates using metal oxide electrocatalysts

2024

Optimizing the binding of the* OOH intermediate via axially coordinated Co-N5 motif for efficient electrocatalytic H2O2 production

Applied Catalysis B: Environmental

2023/12/5

Tailoring the d-band center of Ni on a dual-single-atom Ni–ZnNC catalyst for efficient H2O2 production

Materials Today Energy

2023/12/1

Monodispersed aluminum in carbon nitride creates highly efficient nitrogen active sites for ultra-high hydrogen peroxide photoproduction

Nano Energy

2023/4/1

Improving photocatalytic hydrogen production via ultrafine-grained precipitates formed nearby surface defects of NiFe-LDH nanosheets

Chemical Engineering Journal

2022/10/15

High activity and selectivity of single palladium atom for oxygen hydrogenation to H2O2

Nature Communications

2022/8/12

Hydrogenated TiO2 Nanoparticles Loaded with Au Nanoclusters Demonstrating Largely Enhanced Performance for Electrochemical Reduction of Nitrogen to …

Energy Technology

2022/7

Single-atom alloy with Pt-Co dual sites as an efficient electrocatalyst for oxygen reduction reaction

Applied Catalysis B: Environmental

2022/6/5

Ligand charge donation–acquisition balance: a unique strategy to boost single pt atom catalyst mass activity toward the hydrogen evolution reaction

ACS Catalysis

2022/5/5

Exsolved Co3O4 with tunable oxygen vacancies for electrocatalytic H2O2 production

Materials Today Energy

2022/3/1

Iridium single-atom catalyst coupled with lattice oxygen activated CoNiO 2 for accelerating the oxygen evolution reaction

Journal of Materials Chemistry A

2022

Ion-irradiation of catalyst and electrode materials for water electrolysis/photoelectrolysis cells, rechargeable batteries, and supercapacitors

2022

Engineering local coordination environment of atomically dispersed platinum catalyst via lattice distortion of support for efficient hydrogen evolution reaction

Materials Today Energy

2021/6/1

Substitutionally Dispersed High‐Oxidation CoOx Clusters in the Lattice of Rutile TiO2 Triggering Efficient CoTi Cooperative Catalytic Centers for Oxygen …

Advanced Functional Materials

2021

Water management by hierarchical structures for highly efficient solar water evaporation

Journal of Materials Chemistry A

2021

A synergetic effect between photogenerated carriers and photothermally enhanced electrochemical urea-assisted hydrogen generation on the Ni-NiO/nickel foam catalyst

Materials Advances

2021

In situ liquid cell transmission electron microscopy guiding the design of large-sized cocatalysts coupled with ultra-small photocatalysts for highly efficient energy harvesting

2022/11/30

See List of Professors in Ge Chen University(Beijing University of Technology)

Co-Authors

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