Nanfeng Zheng (郑南峰)

About Nanfeng Zheng (郑南峰)

Nanfeng Zheng (郑南峰), With an exceptional h-index of 104 and a recent h-index of 78 (since 2020), a distinguished researcher at Xiamen University, specializes in the field of Nanomaterials, Material Chemistry, Catalysis, Biomaterials, Nanoclusters.

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

Redox-Sensitive NiOx Stabilizing Perovskite Films for High-Performance Photovoltaics

Supported Atomically Dispersed Pd Catalyzed Direct Alkoxylation and Allylic Alkylation†

Surface Ligand Evolution: Sulfur-Directed Covalent Bonding of PPh3 on Pd4S with Improved Semi-hydrogenation of Terminal Alkynes

Efficient and Stable Proton Exchange Membrane Water Electrolysis Enabled by Stress Optimization

Constructing Robust 3D Ionomer Networks in the Catalyst Layer to Achieve Stable Water Electrolysis for Green Hydrogen Production

Managed spatial strain uniformity for efficient perovskite photovoltaics enables minimized energy deficit

Probing current density distribution over a catalyst layer at the micrometer scale in a water electrolyzer

Thermally activated delayed fluorescence Au‐Ag‐oxo nanoclusters: From photoluminescence to radioluminescence

Nanfeng Zheng (郑南峰) Information

University

Position

Professor of Chemistry

Citations(all)

37689

Citations(since 2020)

22101

Cited By

24927

hIndex(all)

104

hIndex(since 2020)

78

i10Index(all)

254

i10Index(since 2020)

238

Email

University Profile Page

Google Scholar

Nanfeng Zheng (郑南峰) Skills & Research Interests

Nanomaterials

Material Chemistry

Catalysis

Biomaterials

Nanoclusters

Top articles of Nanfeng Zheng (郑南峰)

Redox-Sensitive NiOx Stabilizing Perovskite Films for High-Performance Photovoltaics

Journal of the American Chemical Society

2024/4/19

Supported Atomically Dispersed Pd Catalyzed Direct Alkoxylation and Allylic Alkylation†

Chinese Journal of Chemistry

2024/4/1

Surface Ligand Evolution: Sulfur-Directed Covalent Bonding of PPh3 on Pd4S with Improved Semi-hydrogenation of Terminal Alkynes

Precision Chemistry

2024/3/26

Efficient and Stable Proton Exchange Membrane Water Electrolysis Enabled by Stress Optimization

ACS Central Science

2024/3/21

Constructing Robust 3D Ionomer Networks in the Catalyst Layer to Achieve Stable Water Electrolysis for Green Hydrogen Production

ACS Applied Materials & Interfaces

2024/3/19

Managed spatial strain uniformity for efficient perovskite photovoltaics enables minimized energy deficit

Joule

2024/2/6

Probing current density distribution over a catalyst layer at the micrometer scale in a water electrolyzer

Catalysis Science & Technology

2024

Thermally activated delayed fluorescence Au‐Ag‐oxo nanoclusters: From photoluminescence to radioluminescence

Aggregate

2024

Frustrated Lewis Pairs on Pentacoordinated Al 3+-Enriched Al 2 O 3 Promote Heterolytic Hydrogen Activation and Hydrogenation

Chemical Science

2024

Interfacial oxidized Pd species dominate catalytic hydrogenation of polar unsaturated bonds

Nano Research

2024/1

Hydride-doped Ag17Cu10 nanoclusters as high-performance electrocatalysts for CO2 reduction

Iscience

2023/10/20

Array-Based Clusters of Copper with Largely Exposed Metal Sites for Promoting Catalysis

Chemistry of Materials

2023/9/8

Solvent racing crystallization: Low-solvation dispersion cosolvents for high-quality halide perovskites in photovoltaics

Joule

2023/7/19

Mechanism of particle-mediated inhibition of demetalation for single-atom catalytic sites in acidic electrochemical environments

Journal of the American Chemical Society

2023/7/10

Self-reduction synthesis of supported ultrafine Pd nanoparticles with high activity and stability in hydrogenation

Science China Materials

2023/7

Robust Anode‐Free Sodium Metal Batteries Enabled by Artificial Sodium Formate Interface (Adv. Energy Mater. 22/2023)

Advanced Energy Materials

2023/6

Antioxidant High‐Conductivity Copper Pastes Based on Core–Shell Copper Nanoparticles for Flexible Printed Electronics

Advanced Functional Materials

2023/6

Ensemble Effect of the Nickel–Silica Interface Promotes the Water–Gas Shift Reaction

ACS Catalysis

2023/5/16

Surface Coordination Decouples Hydrogenation Catalysis on Supported Metal Catalysts

CCS Chemistry

2023/5/1

See List of Professors in Nanfeng Zheng (郑南峰) University(Xiamen University)

Co-Authors

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