Yusheng Ye

Yusheng Ye

Stanford University

H-index: 45

North America-United States

About Yusheng Ye

Yusheng Ye, With an exceptional h-index of 45 and a recent h-index of 40 (since 2020), a distinguished researcher at Stanford University, specializes in the field of Energy, Lithium-Sulfur Batteries, Lithium Batteries, Fast Charge.

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

Recent Advances and Opportunities in Reactivating Inactive Lithium in Batteries

Lithiophilic Hydrogen-Substituted Graphdiyne Aerogels with Ionically Conductive Channels for High-Performance Lithium Metal Batteries

Quadruple the rate capability of high-energy batteries through a porous current collector design

Solvation-property relationship of lithium-sulphur battery electrolytes

Recovery of isolated lithium through discharged state calendar ageing

Interlayer engineering of Fe3GeTe2: From 3D superlattice to 2D monolayer

LiH formation and its impact on Li batteries revealed by cryogenic electron microscopy

Fireproof, lightweight, polymer-polymer solid-state electrolyte for safe lithium batteries

Yusheng Ye Information

University

Position

(Postdoc) Beijing Institute of Technology (Ph.D)

Citations(all)

6124

Citations(since 2020)

5208

Cited By

2503

hIndex(all)

45

hIndex(since 2020)

40

i10Index(all)

65

i10Index(since 2020)

65

Email

University Profile Page

Google Scholar

Yusheng Ye Skills & Research Interests

Energy

Lithium-Sulfur Batteries

Lithium Batteries

Fast Charge

Top articles of Yusheng Ye

Recent Advances and Opportunities in Reactivating Inactive Lithium in Batteries

2024/4/2

Lithiophilic Hydrogen-Substituted Graphdiyne Aerogels with Ionically Conductive Channels for High-Performance Lithium Metal Batteries

Nano Letters

2024/3/4

Quadruple the rate capability of high-energy batteries through a porous current collector design

Nature Energy

2024/2/28

Solvation-property relationship of lithium-sulphur battery electrolytes

Nature Communications

2024/2/10

Recovery of isolated lithium through discharged state calendar ageing

Nature

2024/2/8

Interlayer engineering of Fe3GeTe2: From 3D superlattice to 2D monolayer

Proceedings of the National Academy of Sciences

2024/1/23

LiH formation and its impact on Li batteries revealed by cryogenic electron microscopy

Science advances

2023/3/24

Fireproof, lightweight, polymer-polymer solid-state electrolyte for safe lithium batteries

2023/2/2

Ultrahigh‐Loading Manganese‐Based Electrodes for Aqueous Batteries via Polymorph Tuning

Advanced Materials

2023/8

Electrolytes with moderate lithium polysulfide solubility for high-performance long-calendar-life lithium–sulfur batteries

Proceedings of the National Academy of Sciences

2023/8/1

Ultralight, fire-extinguishing and temperature modulated current collector devices and method therefor

2023/5/25

Experimental Discovery of a Fast and Stable Lithium Thioborate Solid Electrolyte, Li6+2x[B10S18]Sx (x ≈ 1)

ACS Energy Letters

2023/5/25

Spatially confined LiF nanoparticles in an aligned polymer matrix as the artificial SEI layer for lithium metal anodes

Nano letters

2022/12/28

Fast-charging of hybrid lithium-ion/lithium-metal anodes by nanostructured hard carbon host

ACS Energy Letters

2022/11/14

An Integrated 3D Hydrophilicity/Hydrophobicity Design for Artificial Sweating Skin (i‐TRANS) Mimicking Human Body Perspiration

Advanced Materials

2022/11

See List of Professors in Yusheng Ye University(Stanford University)

Co-Authors

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