Jingjie Wu

Jingjie Wu

University of Cincinnati

H-index: 55

North America-United States

About Jingjie Wu

Jingjie Wu, With an exceptional h-index of 55 and a recent h-index of 53 (since 2020), a distinguished researcher at University of Cincinnati, specializes in the field of Catalysis and Reaction Engineering, 2D and Carbon Materials, CO2 Capture and Utilization.

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

Synergistic Effects of Amine Functional Groups and Enriched‐Atomic‐Iron Sites in Carbon Dots for Industrial‐Current–Density CO2 Electroreduction

Gas diffusion electrode suitable for use in carbon dioxide electrolyzer and methods for making the same

Dynamic Reconstruction of Two‐Dimensional Defective Bi Nanosheets for Efficient Electrocatalytic Urea Synthesis

Carbon Catalysts Empowering Sustainable Chemical Synthesis via Electrochemical CO2 Conversion and Two‐Electron Oxygen Reduction Reaction

Directing CO2 electroreduction pathways for selective C2 product formation using single-site doped copper catalysts

Spatial Management of CO Diffusion on Tandem Electrode Promotes NH2 Intermediate Formation for Efficient Urea Electrosynthesis

Large-scale synthesis of metal/nitrogen Co-doped carbon catalysts for CO2 electroreduction

Gas diffusion electrodes with segmented catalyst layers for CO2 reduction

Jingjie Wu Information

University

Position

___

Citations(all)

11655

Citations(since 2020)

9392

Cited By

6399

hIndex(all)

55

hIndex(since 2020)

53

i10Index(all)

101

i10Index(since 2020)

95

Email

University Profile Page

Google Scholar

Jingjie Wu Skills & Research Interests

Catalysis and Reaction Engineering

2D and Carbon Materials

CO2 Capture and Utilization

Top articles of Jingjie Wu

Synergistic Effects of Amine Functional Groups and Enriched‐Atomic‐Iron Sites in Carbon Dots for Industrial‐Current–Density CO2 Electroreduction

Small

2024/3/21

Gas diffusion electrode suitable for use in carbon dioxide electrolyzer and methods for making the same

2024/3/7

Dynamic Reconstruction of Two‐Dimensional Defective Bi Nanosheets for Efficient Electrocatalytic Urea Synthesis

Angewandte Chemie International Edition

2024/2/22

Carbon Catalysts Empowering Sustainable Chemical Synthesis via Electrochemical CO2 Conversion and Two‐Electron Oxygen Reduction Reaction

2024/2/2

Directing CO2 electroreduction pathways for selective C2 product formation using single-site doped copper catalysts

Nature Chemical Engineering

2024/2

Spatial Management of CO Diffusion on Tandem Electrode Promotes NH2 Intermediate Formation for Efficient Urea Electrosynthesis

ACS Energy Letters

2023/7/14

Large-scale synthesis of metal/nitrogen Co-doped carbon catalysts for CO2 electroreduction

Electrochimica Acta

2023/7/1

Gas diffusion electrodes with segmented catalyst layers for CO2 reduction

2023/6/27

Revisiting Reaction Kinetics of CO Electroreduction to C2+ Products in a Flow Electrolyzer

Energy & Fuels

2023/5/19

Facile fabrication of carbon dots containing abundant h-BN/graphite heterostructures as efficient electrocatalyst for hydrogen peroxide synthesis

Applied Catalysis B: Environmental

2023/5/5

Accelerating Industrial‐Level NO3− Electroreduction to Ammonia on Cu Grain Boundary Sites via Heteroatom Doping Strategy

Small

2023/6

Navigating CO utilization in tandem electrocatalysis of CO2

2023/4/1

Copper defects for CO2 electrocatalysis toward a specific multicarbon product

2023/3/1

Ashok Kumar Ummireddi
Ashok Kumar Ummireddi

H-Index: 1

Jingjie Wu
Jingjie Wu

H-Index: 39

Trace level of atomic copper in N-doped graphene quantum dots switching the selectivity from C1 to C2 products in CO electroreduction

Materials Today Chemistry

2023/2/14

N-B-OH Site-activated Graphene Quantum Dots for Boosting Electrochemical Hydrogen Peroxide Production

Advanced Materials

2023/2/13

Halogen-induced planar defects in Cu catalysts for ammonia electrosynthesis at an ampere-level current density

Materials Chemistry Frontiers

2023

Revealing the activity and selectivity of ppm level copper in gas diffusion electrodes towards CO and CO 2 electroreduction

EES Catalysis

2023

Bifunctional iron doped CuS catalysts towards highly efficient overall water electrolysis in the alkaline electrolyte

International Journal of Hydrogen Energy

2022/5/1

Pseudocapacitive TiNb2O7/reduced graphene oxide nanocomposite for high–rate lithium ion hybrid capacitors

Journal of Colloid and Interface Science

2022/3/15

Highly selective and productive reduction of carbon dioxide to multicarbon products via in situ CO management using segmented tandem electrodes

Nature Catalysis

2022/3/3

Tianyu Zhang
Tianyu Zhang

H-Index: 4

Jingjie Wu
Jingjie Wu

H-Index: 39

See List of Professors in Jingjie Wu University(University of Cincinnati)

Co-Authors

academic-engine