Xin Mao

About Xin Mao

Xin Mao, With an exceptional h-index of 20 and a recent h-index of 20 (since 2020), a distinguished researcher at Queensland University of Technology, specializes in the field of DFT, Energy Storage and Conversion.

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

Coupling Ni Single Atomic Sites with Metallic Aggregates at Adjacent Geometry on Carbon Support for Efficient Hydrogen Peroxide Electrosynthesis

Ligand and Strain Synergistic Effect in NiFeP0.32 LDH for Triggering Efficient Oxygen Evolution Reaction

Electrochemical Nitrate‐to‐Ammonia Conversion Enabled by Carbon‐Decoration of Ni─GaOOH Synthesized via Plasma‐Assisted CO2 Reduction

Computational electrocatalysis beyond conventional hydrogen electrode model: CO 2 reduction to C 2 species on copper facilitated by dynamically formed solvent halide ions at …

Crystal facet engineering of spinel NiCo 2 O 4 with enhanced activity and water resistance for tuneable catalytic methane oxidation

Efficient CO2 Reduction to Formate on CsPbI3 Nanocrystals Wrapped with Reduced Graphene Oxide

Unveiling the dynamic active site of defective carbon-based electrocatalysts for hydrogen peroxide production

Phosphorus‐Modulated Generation of Defective Molybdenum Sites as Synergistic Active Centers for Durable Oxygen Evolution

Xin Mao Information

University

Position

School of Chemistry and Physics

Citations(all)

2104

Citations(since 2020)

2099

Cited By

474

hIndex(all)

20

hIndex(since 2020)

20

i10Index(all)

29

i10Index(since 2020)

29

Email

University Profile Page

Google Scholar

Xin Mao Skills & Research Interests

DFT

Energy Storage and Conversion

Top articles of Xin Mao

Coupling Ni Single Atomic Sites with Metallic Aggregates at Adjacent Geometry on Carbon Support for Efficient Hydrogen Peroxide Electrosynthesis

Advanced Science

2024/4/11

Ligand and Strain Synergistic Effect in NiFeP0.32 LDH for Triggering Efficient Oxygen Evolution Reaction

Small

2024/1/23

Electrochemical Nitrate‐to‐Ammonia Conversion Enabled by Carbon‐Decoration of Ni─GaOOH Synthesized via Plasma‐Assisted CO2 Reduction

Small

2024

Computational electrocatalysis beyond conventional hydrogen electrode model: CO 2 reduction to C 2 species on copper facilitated by dynamically formed solvent halide ions at …

Chemical Science

2024

Crystal facet engineering of spinel NiCo 2 O 4 with enhanced activity and water resistance for tuneable catalytic methane oxidation

EES Catalysis

2024

Efficient CO2 Reduction to Formate on CsPbI3 Nanocrystals Wrapped with Reduced Graphene Oxide

Nano-Micro Letters

2023/12

Unveiling the dynamic active site of defective carbon-based electrocatalysts for hydrogen peroxide production

Nature Communications

2023/10/7

Phosphorus‐Modulated Generation of Defective Molybdenum Sites as Synergistic Active Centers for Durable Oxygen Evolution

Small Methods

2023/10

Computational Design and Experimental Validation of Enzyme Mimicking Cu-Based Metal–Organic Frameworks for the Reduction of CO2 into C2 Products: C–C …

The Journal of Physical Chemistry B

2022/10/11

Photocatalytic conversion of sugars to 5-hydroxymethylfurfural using aluminium (III) and fulvic acid

Nature Communications

2023/8/1

Activating Hydrogen Evolution Reaction on Carbon Nanotube via Aryl Functionalisation: The Role of Hybrid sp2–sp3 Interface and Curvature

Nanomaterials

2023/7/21

ENSO-related centennial and millennial-scale hydroclimate changes recorded from Lake Xiaolongchi in arid Central Asia over the past 8000 years

The Holocene

2023/7

Carbon nanotubes encapsulated transition metals for efficient hydrogen evolution reaction: coupling effect of 3d orbital and π-bond

Materials Today Chemistry

2023/6/1

Carbon‐Anchored Molybdenum Oxide Nanoclusters as Efficient Catalysts for the Electrosynthesis of Ammonia and Urea

Angewandte Chemie International Edition

2023/5/2

Engineering active Ni-doped Co2P catalyst for efficient electrooxidation coupled with hydrogen evolution

Nano Research

2023/5

Transition-metal-free, pure p-block alloy electrocatalysts for the highly efficient nitrate reduction to ammonia

Chemistry of Materials

2023/3/22

Theoretical evaluation of highly efficient nitrate reduction to ammonia on InBi

The Journal of Physical Chemistry Letters

2023/3/1

Dual integrating oxygen and sulphur on surface of CoTe nanorods triggers enhanced oxygen evolution reaction

Advanced Science

2023/3

A new operando surface restructuring pathway via ion-pairing of catalyst and electrolyte for water oxidation

Chemical Engineering Journal

2023

Ni–Co Alloy Nanoparticles Catalyze Selective Electrochemical Coupling of Nitroarenes into Azoxybenzene Compounds in Aqueous Electrolyte

ACS nano

2023/2/14

See List of Professors in Xin Mao University(Queensland University of Technology)

Co-Authors

academic-engine