Mengnan Wang

Mengnan Wang

Imperial College London

H-index: 8

Europe-United Kingdom

About Mengnan Wang

Mengnan Wang, With an exceptional h-index of 8 and a recent h-index of 8 (since 2020), a distinguished researcher at Imperial College London, specializes in the field of Fuel Cell, Biomass, Carbon Materials, Catalysis.

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

Inducing Porosity in Xylose-derived FeNC Electrocatalysts for Alkaline Oxygen Reduction

Investigating the Role of Fe‐Pyrrolic N4 Configuration in the Oxygen Reduction Reaction via Covalently Bound Porphyrin Functionalized Carbon Nanotubes

Optimal ionomer interaction resolved by operando X-ray Absorption Spectroscopy and gas sorption analysis

Elucidating the Effect of Nitrogen Occupancy on the Hydrogen Evolution Reaction for a Series of Titanium Oxynitride Electrocatalysts

Lignin-Derived Mesoporous Carbon for Sodium-Ion Batteries: Block Copolymer Soft Templating and Carbon Microstructure Analysis

Reaching the Fundamental Limitation in CO2 Reduction to CO with Single Atom Catalysts

Macroporous Carbon Films Support Vs. Conventional Carbon Particles with FeN4 Sites for Oxygen Reduction in Gas-Diffusion-Electrodes

Electronic and Surface Modifications of Ni–Co–Fe Oxides: A Catalyst with Maximum Exposure of Fe Active Sites for Water Electrolysis

Mengnan Wang Information

University

Position

___

Citations(all)

182

Citations(since 2020)

141

Cited By

57

hIndex(all)

8

hIndex(since 2020)

8

i10Index(all)

7

i10Index(since 2020)

7

Email

University Profile Page

Google Scholar

Mengnan Wang Skills & Research Interests

Fuel Cell

Biomass

Carbon Materials

Catalysis

Top articles of Mengnan Wang

Inducing Porosity in Xylose-derived FeNC Electrocatalysts for Alkaline Oxygen Reduction

Green Chemistry

2024

Investigating the Role of Fe‐Pyrrolic N4 Configuration in the Oxygen Reduction Reaction via Covalently Bound Porphyrin Functionalized Carbon Nanotubes

Advanced Functional Materials

2023/12/31

Optimal ionomer interaction resolved by operando X-ray Absorption Spectroscopy and gas sorption analysis

2023/12/12

Elucidating the Effect of Nitrogen Occupancy on the Hydrogen Evolution Reaction for a Series of Titanium Oxynitride Electrocatalysts

ChemCatChem

2023/12/7

Lignin-Derived Mesoporous Carbon for Sodium-Ion Batteries: Block Copolymer Soft Templating and Carbon Microstructure Analysis

Chemistry of Materials

2023/12/6

Reaching the Fundamental Limitation in CO2 Reduction to CO with Single Atom Catalysts

Advanced functional materials

2023/10

Macroporous Carbon Films Support Vs. Conventional Carbon Particles with FeN4 Sites for Oxygen Reduction in Gas-Diffusion-Electrodes

Electrochemical Society Meeting Abstracts 243

2023/8/28

Mengnan Wang
Mengnan Wang

H-Index: 2

Magda Titirici
Magda Titirici

H-Index: 68

Electronic and Surface Modifications of Ni–Co–Fe Oxides: A Catalyst with Maximum Exposure of Fe Active Sites for Water Electrolysis

ACS Applied Engineering Materials

2023/6/27

Heterostructured core–shell Ni–Co@ Fe–Co nanoboxes of prussian blue analogues for efficient electrocatalytic hydrogen evolution from alkaline seawater

ACS catalysis

2023/1/9

Reaching the Fundamental Limitation in CO

2023

Stable Sodium‐Metal Batteries in Carbonate Electrolytes Achieved by Bifunctional, Sustainable Separators with Tailored Alignment

Advanced Materials

2022/12

Bioinspired and bioderived aqueous electrocatalysis

2022/11/10

Unravelling the synergy of oxygen vacancies and gold nanostars in hematite for the electrochemical and photoelectrochemical oxygen evolution reaction

2022/4/1

Metal coordination in C 2 N-like materials towards dual atom catalysts for oxygen reduction

Journal of Materials Chemistry A

2022

See List of Professors in Mengnan Wang University(Imperial College London)