Xiongyi LIANG

About Xiongyi LIANG

Xiongyi LIANG, With an exceptional h-index of 17 and a recent h-index of 17 (since 2020), a distinguished researcher at City University of Hong Kong, specializes in the field of DFT, 2D materials, Energy & Environment.

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

Anchoring Active Li Metal in Oriented Channel by In Situ Formed Nucleation Sites Enabling Durable Lithium‐Metal Batteries

Low‐potential iodide oxidation enables dual‐atom CoFe─ N─ C catalysts for ultra‐stable and high‐energy‐efficiency Zn–air batteries

Bifunctional Substrates: In‐situ Ni, Fe co‐doped Cobalt Carbonate Hydroxides for Overall Water Splitting

Inducing Fe 3d Electron Delocalization and Spin-State Transition of FeN4 Species Boosts Oxygen Reduction Reaction for Wearable Zinc–Air Battery

Role of transition metal d-orbitals in single-atom catalysts for nitric oxide electroreduction to ammonia

Decoration of NiFe‐LDH Nanodots Endows Lower Fe‐d Band Center of Fe1‐N‐C Hollow Nanorods as Bifunctional Oxygen Electrocatalysts with Small …

Self‐Assembly Silver Nanoparticles Decorated on Gold Nanoislands for Label‐Free Localized Surface Plasmon Resonance Biosensing

Theoretical Screening of Transition Metal-Embedded Ti2N for High-Efficiency Hydrogen Evolution Reaction

Xiongyi LIANG Information

University

Position

___

Citations(all)

909

Citations(since 2020)

852

Cited By

287

hIndex(all)

17

hIndex(since 2020)

17

i10Index(all)

20

i10Index(since 2020)

20

Email

University Profile Page

Google Scholar

Xiongyi LIANG Skills & Research Interests

DFT

2D materials

Energy & Environment

Top articles of Xiongyi LIANG

Anchoring Active Li Metal in Oriented Channel by In Situ Formed Nucleation Sites Enabling Durable Lithium‐Metal Batteries

Advanced Materials

2024/3/13

Xiongyi Liang
Xiongyi Liang

H-Index: 10

Jun Wang
Jun Wang

H-Index: 10

Low‐potential iodide oxidation enables dual‐atom CoFe─ N─ C catalysts for ultra‐stable and high‐energy‐efficiency Zn–air batteries

Small

2024/2

Xiongyi Liang
Xiongyi Liang

H-Index: 10

Liang Zhen
Liang Zhen

H-Index: 39

Bifunctional Substrates: In‐situ Ni, Fe co‐doped Cobalt Carbonate Hydroxides for Overall Water Splitting

ChemCatChem

2024/1/22

Inducing Fe 3d Electron Delocalization and Spin-State Transition of FeN4 Species Boosts Oxygen Reduction Reaction for Wearable Zinc–Air Battery

Nano-Micro Letters

2023/12

Role of transition metal d-orbitals in single-atom catalysts for nitric oxide electroreduction to ammonia

Journal of Colloid and Interface Science

2023/10/1

Xiongyi Liang
Xiongyi Liang

H-Index: 10

Maohuai Wang
Maohuai Wang

H-Index: 7

Decoration of NiFe‐LDH Nanodots Endows Lower Fe‐d Band Center of Fe1‐N‐C Hollow Nanorods as Bifunctional Oxygen Electrocatalysts with Small …

Advanced Energy Materials

2023/4

Self‐Assembly Silver Nanoparticles Decorated on Gold Nanoislands for Label‐Free Localized Surface Plasmon Resonance Biosensing

Advanced Materials Interfaces

2022/5

Theoretical Screening of Transition Metal-Embedded Ti2N for High-Efficiency Hydrogen Evolution Reaction

ACS Sustainable Chemistry & Engineering

2022/3/18

Xiongyi Liang
Xiongyi Liang

H-Index: 10

Maohuai Wang
Maohuai Wang

H-Index: 7

Encapsulating atomic molybdenum into hierarchical nitrogen-doped carbon nanoboxes for efficient oxygen reduction

Journal of Colloid and Interface Science

2022/8/15

NiMo@ C3N5 heterostructures with multiple electronic transmission channels for highly efficient hydrogen evolution from alkaline electrolytes and seawater

Chemical Engineering Journal

2022/6/15

Surface engineering of flower-like ionic liquid-functionalized graphene anchoring palladium nanocrystals for a boosted ethanol oxidation reaction

Inorganic Chemistry

2021/10/28

Xiongyi Liang
Xiongyi Liang

H-Index: 10

Experimental and theoretical investigation of the control and balance of active sites on oxygen plasma-functionalized MoSe2 nanosheets for efficient hydrogen evolution reaction

The Journal of Chemical Physics

2018/3/28

Adsorption of SF6 Decomposed Species on Ti3C2O2 and Ti3C2F2 with Point Defects by DFT Study

Advanced Theory and Simulations

2021/7

Xiongyi Liang
Xiongyi Liang

H-Index: 10

Chen Guo
Chen Guo

H-Index: 14

Encapsulating dual-phased Mo2C-WC nanocrystals into ultrathin carbon nanosheet assemblies for efficient electrocatalytic hydrogen evolution

Chemical Engineering Journal

2021/3/15

Single transition metal atoms on nitrogen-doped carbon for CO2 electrocatalytic reduction: CO production or further CO reduction?

Applied Surface Science

2020/12/15

Morphology and strain control of hierarchical cobalt oxide nanowire electrocatalysts via solvent effect

Nano Research

2020/11

Activity origin and design principles for atomic vanadium anchoring on phosphorene monolayer for nitrogen reduction reaction

Nano Research

2020/11

Xiongyi Liang
Xiongyi Liang

H-Index: 10

Chen Guo
Chen Guo

H-Index: 14

Metal-free two-dimensional phosphorus carbide as an efficient electrocatalyst for hydrogen evolution reaction comparable to platinum

Nano Energy

2020/5/1

Xiongyi Liang
Xiongyi Liang

H-Index: 10

See List of Professors in Xiongyi LIANG University(City University of Hong Kong)

Co-Authors

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