Gao Enlai (高恩来)

Gao Enlai (高恩来)

Wuhan University

H-index: 26

Asia-China

About Gao Enlai (高恩来)

Gao Enlai (高恩来), With an exceptional h-index of 26 and a recent h-index of 26 (since 2020), a distinguished researcher at Wuhan University, specializes in the field of Mechanics, Crystals, Multi-Scale Modeling.

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

Waves in elastic bars under axial constant velocity loading

Kinetic Modulation of Carbon Nanotube Growth in Direct Spinning for High-Strength Carbon Nanotube Fibers

Data-driven discovery of ultraincompressible crystals from a universal correlation between bulk modulus and volumetric cohesive energy

An iron-base oxygen-evolution electrode for high-temperature electrolyzers

Atomic stiffness for bulk modulus prediction and high-throughput screening of ultraincompressible crystals

High Interfacial Shear Strength and High Tensile Strength in Heterocyclic Aramid Fibers with Improved Interchain Interaction

The Stiffest and Strongest Predicted Material: C2N Atomic Chains Approach the Theoretical Limits

Ultra‐Strong Regenerated Wool Keratin Fibers Regulating via Keratin Conformational Transition

Gao Enlai (高恩来) Information

University

Position

; THU; UTD

Citations(all)

3525

Citations(since 2020)

3157

Cited By

1444

hIndex(all)

26

hIndex(since 2020)

26

i10Index(all)

48

i10Index(since 2020)

45

Email

University Profile Page

Wuhan University

Google Scholar

View Google Scholar Profile

Gao Enlai (高恩来) Skills & Research Interests

Mechanics

Crystals

Multi-Scale Modeling

Top articles of Gao Enlai (高恩来)

Title

Journal

Author(s)

Publication Date

Waves in elastic bars under axial constant velocity loading

International Journal of Mechanical Sciences

Yidu Zhang

Xiangzheng Jia

Yongshou Liu

Enlai Gao

Langquan Shui

2024/7/1

Kinetic Modulation of Carbon Nanotube Growth in Direct Spinning for High-Strength Carbon Nanotube Fibers

Journal of the American Chemical Society

Zuncheng Hu

Xiucai Sun

Xinshi Zhang

Xiangzheng Jia

Xueting Feng

...

2024/4/10

Data-driven discovery of ultraincompressible crystals from a universal correlation between bulk modulus and volumetric cohesive energy

Journal of Physics: Condensed Matter

Xiaoang Yuan

Enlai Gao

2024

An iron-base oxygen-evolution electrode for high-temperature electrolyzers

Nature Communications

Kaifa Du

Enlai Gao

Chunbo Zhang

Yongsong Ma

Peilin Wang

...

2023/1/17

Atomic stiffness for bulk modulus prediction and high-throughput screening of ultraincompressible crystals

Nature Communications

Ruihua Jin

Xiaoang Yuan

Enlai Gao

2023/7/17

High Interfacial Shear Strength and High Tensile Strength in Heterocyclic Aramid Fibers with Improved Interchain Interaction

Advanced Functional Materials

Jiajun Luo

Yeye Wen

Tao Li

Xiangzheng Jia

Xudong Lei

...

2024/2

The Stiffest and Strongest Predicted Material: C2N Atomic Chains Approach the Theoretical Limits

Advanced Science

Enlai Gao

Hang Yang

Yongzhe Guo

Steven O Nielsen

Ray H Baughman

2023/7

Ultra‐Strong Regenerated Wool Keratin Fibers Regulating via Keratin Conformational Transition

Advanced Functional Materials

Liang Zhang

Ning Ma

Xiangzheng Jia

Tianjiao Hua

Jin Zhu

...

2023/10

Fabricating strong and tough aramid fibers by small addition of carbon nanotubes

Nature Communications

Jiajun Luo

Yeye Wen

Xiangzheng Jia

Xudong Lei

Zhenfei Gao

...

2023/5/25

Simultaneously enhanced interfacial shear strength and tensile strength of heterocyclic aramid fiber by graphene oxide

Nano Research

Ziyi Zhang

Xiangzheng Jia

Chun Li

Lanying Li

Yeye Wen

...

2023/10

Electronic Densification and Stiffening of Diamond

The Journal of Physical Chemistry C

Yan Wang

Yongzhe Guo

Enlai Gao

2023/5/11

Highly Stable Single-Phase FeCoNiMnX (X= Cr, Mo, W) High-Entropy Alloy Catalysts with Submicrometer Size for Efficient Oxygen Evolution

ACS Sustainable Chemistry & Engineering

Peng Li

Bozhao Wu

Kaifa Du

Ze Liu

Enlai Gao

...

2023/9/12

Mechanical energy harvesters with tensile efficiency of 17.4% and torsional efficiency of 22.4% based on homochirally plied carbon nanotube yarns

Nature Energy

Mengmeng Zhang

Wenting Cai

Zhong Wang

Shaoli Fang

Runyu Zhang

...

2023/2

Electronegativity Force Field for Prediction of Elastic Moduli

The Journal of Physical Chemistry A

Chunbo Zhang

Enlai Gao

2023/7/31

Sn-based redox cycle mediated microenvironment regulation of Cu sites on poly (ionic liquid) enhance electrocatalytic CO-to-C2+ conversion

Applied Catalysis B: Environmental

Yi-Ran Du

Xiao-Qiang Li

Guo-Yi Duan

Yue Pan

En-Lai Gao

...

2023/11/15

Robust Structural Superlubricity under Gigapascal Pressures

Zhiping Xu

Taotao Sun

Enlai Gao

Xiangzheng Jia

Zhou Wang

...

2022/7/1

More powerful twistron carbon nanotube yarn mechanical energy harvesters

Advanced Materials

Zhong Wang

Tae Jin Mun

Fernando M Machado

Ji Hwan Moon

Shaoli Fang

...

2022/4/30

Exploring the Bounds on the Young’s Modulus and Gravimetric Young’s Modulus

Physical Review Applied

Enlai Gao

Xiaoang Yuan

Steven O. Nielsen

Ray H. Baughman

2022/6

Extraordinary mechanical performance in charged carbyne

Chinese Physics B

Yong-Zhe Guo

Yong-Heng Wang

Kai Huang

Hao Yin

En-Lai Gao

2022/12/1

Poisson’s ratio of two-dimensional hexagonal materials under finite strains

Mechanics of Advanced Materials and Structures

Xiangzheng Jia

Xiaoang Yuan

Han Shui

Enlai Gao

2023/2/16

See List of Professors in Gao Enlai (高恩来) University(Wuhan University)