Hansen Wang

Hansen Wang

Stanford University

H-index: 37

North America-United States

About Hansen Wang

Hansen Wang, With an exceptional h-index of 37 and a recent h-index of 37 (since 2020), a distinguished researcher at Stanford University, specializes in the field of Energy storage, fast charging, Li metal anode, electrolyte, 500 Wh/kg.

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

Rate-Dependent Failure Mechanisms and Mitigating Strategies of Anode-Free Lithium Metal Batteries

Rational solvent molecule tuning for high-performance lithium metal battery electrolytes

Cold‐Starting All‐Solid‐State Batteries from Room Temperature by Thermally Modulated Current Collector in Sub‐Minute

Suspension electrolyte with modified Li+ solvation environment for lithium metal batteries

Liquid electrolyte: The nexus of practical lithium metal batteries

Capturing the swelling of solid-electrolyte interphase in lithium metal batteries

Dynamic spatial progression of isolated lithium during battery operations

Free-standing ultrathin lithium metal–graphene oxide host foils with controllable thickness for lithium batteries

Hansen Wang Information

University

Position

Tsinghua University

Citations(all)

6919

Citations(since 2020)

6561

Cited By

1763

hIndex(all)

37

hIndex(since 2020)

37

i10Index(all)

40

i10Index(since 2020)

40

Email

University Profile Page

Google Scholar

Hansen Wang Skills & Research Interests

Energy storage

fast charging

Li metal anode

electrolyte

500 Wh/kg

Top articles of Hansen Wang

Rate-Dependent Failure Mechanisms and Mitigating Strategies of Anode-Free Lithium Metal Batteries

ACS Applied Materials & Interfaces

2023/3/6

Hansen Wang
Hansen Wang

H-Index: 18

Liquid electrolyte: The nexus of practical lithium metal batteries

2022/3/16

Free-standing ultrathin lithium metal–graphene oxide host foils with controllable thickness for lithium batteries

Nature Energy

2021/8

Potentiometric measurement to probe solvation energy and its correlation to lithium battery cyclability

Journal of the American Chemical Society

2021/6/29

Dual‐solvent Li‐ion solvation enables high‐performance Li‐metal batteries

Advanced Materials

2021/6

Corrosion of lithium metal anodes during calendar ageing and its microscopic origins

Nature Energy

2021/5

Organic wastewater treatment by a single-atom catalyst and electrolytically produced H2O2

Nature sustainability

2021/3

Efficient lithium metal cycling over a wide range of pressures from an anion-derived solid-electrolyte interphase framework

ACS Energy Letters

2021/2/3

Correlating Li-ion solvation structures and electrode potential temperature coefficients

Journal of the American Chemical Society

2021/1/28

Resolving Heterogeneity in Battery Interphases By Cryogenic Electron Microscopy

Electrochemical Society Meeting Abstracts prime2020

2020/11/23

Designing a nanoscale three-phase electrochemical pathway to promote pt-catalyzed formaldehyde oxidation

Nano Letters

2020/11/17

Revealing and elucidating ALD‐derived control of lithium plating microstructure

Advanced Energy Materials

2020/11

See List of Professors in Hansen Wang University(Stanford University)

Co-Authors

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