Kun Liang

Kun Liang

Tulane University

H-index: 33

North America-United States

About Kun Liang

Kun Liang, With an exceptional h-index of 33 and a recent h-index of 30 (since 2020), a distinguished researcher at Tulane University, specializes in the field of Freestanding Holey Film, MXene, Energy Storage, Electrocatalysis.

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

Microstructure and mechanical properties evolution of the Cr coatings on SiC substrates under He irradiation

Sunflower-inspired hydrogel evaporator with mutual reinforcement of evaporation and photodegradation for integrated water management

Engineering Ti3C2-MXene Surface Composition for Excellent Li+ Storage Performance

Suppressing Dielectric Loss in MXene/Polymer Nanocomposites through Interfacial Interactions

Morphology and structure control of lignin-derived hierarchical porous carbon for high-performance supercapacitors

Intercalation of metal into transition metal dichalcogenides in molten salts

Activating Pseudocapacitive Charge Storage of Molten-Salt-Synthesized MXenes in Mild Aqueous Electrolytes

Two-dimensional MXenes as catalytic “flying carpets” to transport biomass valorization towards new horizons: The case of furfural catalytic transfer hydrogenation over noble …

Kun Liang Information

University

Position

Postdoctoral Fellow

Citations(all)

3212

Citations(since 2020)

2519

Cited By

1655

hIndex(all)

33

hIndex(since 2020)

30

i10Index(all)

41

i10Index(since 2020)

40

Email

University Profile Page

Google Scholar

Kun Liang Skills & Research Interests

Freestanding Holey Film

MXene

Energy Storage

Electrocatalysis

Top articles of Kun Liang

Microstructure and mechanical properties evolution of the Cr coatings on SiC substrates under He irradiation

Journal of Materials Research and Technology

2022/7/1

Sunflower-inspired hydrogel evaporator with mutual reinforcement of evaporation and photodegradation for integrated water management

Chemical Engineering Journal

2024/4/23

Engineering Ti3C2-MXene Surface Composition for Excellent Li+ Storage Performance

Molecules

2024/4/11

Suppressing Dielectric Loss in MXene/Polymer Nanocomposites through Interfacial Interactions

ACS nano

2024/3/25

Morphology and structure control of lignin-derived hierarchical porous carbon for high-performance supercapacitors

Colloids and Surfaces A: Physicochemical and Engineering Aspects

2024/3/20

Kun Liang
Kun Liang

H-Index: 24

Qing Huang
Qing Huang

H-Index: 5

Intercalation of metal into transition metal dichalcogenides in molten salts

Small

2024/1

Activating Pseudocapacitive Charge Storage of Molten-Salt-Synthesized MXenes in Mild Aqueous Electrolytes

ACS Applied Energy Materials

2023/11/11

Two-dimensional MXenes as catalytic “flying carpets” to transport biomass valorization towards new horizons: The case of furfural catalytic transfer hydrogenation over noble …

Catalysis Today

2023/11/1

Influence of the microstructure of sputtered Ti films on the anodization toward TiO2 nanotube arrays

Chemical Physics Letters

2023/9/1

Two‐Dimensional MXenes Derived from Medium/High‐Entropy MAX Phases M2GaC (M = Ti/V/Nb/Ta/Mo) and their Electrochemical Performance

Small Methods

2023/8

Chemical scissor–mediated structural editing of layered transition metal carbides

Science

2023/3/17

The rendering from the periodic system of elements on the stability, elastic, and electronic properties of M2AC phases

Materialia

2023/3/1

Progress of high performance Ti 3 C 2 T x MXene nanocomposite films for electromagnetic interference shielding

2023

Kun Liang
Kun Liang

H-Index: 24

Layered Nano‐Mosaic of Niobium Disulfide Heterostructures by Direct Sulfidation of Niobium Carbide MXenes for Hydrogen Evolution

Advanced materials interfaces

2022/5

Liquid metal buffer layer for lithium batteries

2022/12/6

A Multiscale Porous 3D‐Fabric Evaporator with Vertically Aligned Yarns Enables Ultra‐Efficient and Continuous Water Desalination

Advanced Functional Materials

2022/10/1

Metal Cation Pre-Intercalated Ti3C2Tx MXene as Ultra-High Areal Capacitance Electrodes for Aqueous Supercapacitors

ACS Applied Energy Materials

2022/7/20

Synthesis of new two‐dimensional titanium carbonitride Ti2C0. 5N0. 5Tx MXene and its performance as an electrode material for sodium‐ion battery (12/2021)

InfoMat

2021/12

Two-dimensional titanium carbonitride MXene as a highly efficient electrocatalyst for hydrogen evolution reaction

Materials Reports: Energy

2022/2/1

See List of Professors in Kun Liang University(Tulane University)

Co-Authors

academic-engine