Ming QIU

About Ming QIU

Ming QIU, With an exceptional h-index of 35 and a recent h-index of 29 (since 2020), a distinguished researcher at Central China Normal University, specializes in the field of Molecular device, Nano structure, Energy Conversion, solar cell, first principles.

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

Coordination polymer-reinforced composite polymer electrolyte for all-solid-state Li-metal batteries

Carbon enhanced nucleophilicity of Na3V2 (PO4) 3: A general approach for dendrite-free zinc metal anodes

A strategy to enhance rate capability by doping Titanium into Na2FeP2O7@ C cathode materials for Na-ion batteries

Boosting the hydrogen evolution of layered double hydroxide by optimizing the electronic structure and accelerating the water dissociation kinetics

Mechanistic understanding of 3d-metal phthalocyanine catalysts: heterostructure regulation of d z2 orbitals for efficient CO 2 reduction

Arranging Electronic Localization of PtCu Nanoalloys to Stimulate Improved Oxygen Electroreduction for High-Performance Fuel Cells

Spin‐State Modulation on Metal–Organic Frameworks for Electrocatalytic Oxygen Evolution

Nitrogen-rich carbon nitride inducing electron delocalization of Co-N4 site to enhance electrocatalytic carbon dioxide reduction

Ming QIU Information

University

Position

___

Citations(all)

5587

Citations(since 2020)

4696

Cited By

2463

hIndex(all)

35

hIndex(since 2020)

29

i10Index(all)

61

i10Index(since 2020)

40

Email

University Profile Page

Google Scholar

Ming QIU Skills & Research Interests

Molecular device

Nano structure

Energy Conversion

solar cell

first principles

Top articles of Ming QIU

Coordination polymer-reinforced composite polymer electrolyte for all-solid-state Li-metal batteries

Chemical Engineering Journal

2024/5/1

Carbon enhanced nucleophilicity of Na3V2 (PO4) 3: A general approach for dendrite-free zinc metal anodes

Journal of Energy Chemistry

2024/4/1

A strategy to enhance rate capability by doping Titanium into Na2FeP2O7@ C cathode materials for Na-ion batteries

Journal of Power Sources

2023/2/15

Boosting the hydrogen evolution of layered double hydroxide by optimizing the electronic structure and accelerating the water dissociation kinetics

Chemical Engineering Journal

2023/2/1

Mechanistic understanding of 3d-metal phthalocyanine catalysts: heterostructure regulation of d z2 orbitals for efficient CO 2 reduction

Journal of Materials Chemistry A

2023

Arranging Electronic Localization of PtCu Nanoalloys to Stimulate Improved Oxygen Electroreduction for High-Performance Fuel Cells

CCS Chemistry

2023/11/1

Spin‐State Modulation on Metal–Organic Frameworks for Electrocatalytic Oxygen Evolution

Advanced Materials

2023/10

Nitrogen-rich carbon nitride inducing electron delocalization of Co-N4 site to enhance electrocatalytic carbon dioxide reduction

Applied Catalysis B: Environmental

2023/4/1

Chlorinated Cu catalysts for boosting electrocatalytic CO2 to highly reduced products

Chem Catalysis

2023/3/16

Ying Yu
Ying Yu

H-Index: 16

Ming Qiu
Ming Qiu

H-Index: 20

Accelerated water activation and stabilized metal-organic framework via constructing triangular active-regions for ampere-level current density hydrogen production

Nature Communications

2022/10/30

Metal–Organic Frameworks with Assembled Bifunctional Microreactor for Charge Modulation and Strain Generation toward Enhanced Oxygen Electrocatalysis

ACS nano

2022/5/26

High-performance seawater oxidation by a homogeneous multimetallic layered double hydroxide electrocatalyst

Proceedings of the National Academy of Sciences

2022/5/3

A highly reversible, dendrite-free zinc metal anodes enabled by a dual-layered interface

Energy Storage Materials

2022/5/1

Techno-economic and environmental sustainability of industrial-scale productions of perovskite solar cells

Renewable and Sustainable Energy Reviews

2022/4

Jingyi Zhang
Jingyi Zhang

H-Index: 3

Ming Qiu
Ming Qiu

H-Index: 20

Dynamic Restructuring of Coordinatively Unsaturated Copper Paddle Wheel Clusters to Boost Electrochemical CO2 Reduction to Hydrocarbons**

Angewandte Chemie International Edition

2022/1/17

Ultrafast transformation of metal–organic frameworks into advanced oxygen evolution electrocatalysts with good universality and scalability

Journal of Materials Chemistry A

2022

Highly active ruthenium sites stabilized by modulating electron-feeding for sustainable acidic oxygen-evolution electrocatalysis

Energy & Environmental Science

2022

Influence of halide ions on the electrochemical reduction of carbon dioxide over a copper surface

2022

Ming Qiu
Ming Qiu

H-Index: 20

Ying Yu
Ying Yu

H-Index: 16

Single-atom Bi-anchored Au hydrogels with specifically boosted peroxidase-like activity for cascade catalysis and sensing

Sensors and Actuators B: Chemical

2021/9/15

Proton Capture Strategy for Enhancing Electrochemical CO2 Reduction on Atomically Dispersed Metal–Nitrogen Active Sites**

Angewandte Chemie

2021/5/17

See List of Professors in Ming QIU University(Central China Normal University)