Wenxiao Huang

Wenxiao Huang

Stanford University

H-index: 27

North America-United States

About Wenxiao Huang

Wenxiao Huang, With an exceptional h-index of 27 and a recent h-index of 24 (since 2020), a distinguished researcher at Stanford University, specializes in the field of Battery, thin-film device.

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

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

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

Onboard early detection and mitigation of lithium plating in fast-charging batteries

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

Dynamic spatial progression of isolated lithium during battery operations

A morphologically stable Li/electrolyte interface for all‐solid‐state batteries enabled by 3D‐micropatterned garnet

Bright and stable light-emitting diodes made with perovskite nanocrystals stabilized in metal–organic frameworks

Integrated cooling (i-Cool) textile of heat conduction and sweat transportation for personal perspiration management

Wenxiao Huang Information

University

Position

___

Citations(all)

3287

Citations(since 2020)

2749

Cited By

1029

hIndex(all)

27

hIndex(since 2020)

24

i10Index(all)

35

i10Index(since 2020)

27

Email

University Profile Page

Google Scholar

Wenxiao Huang Skills & Research Interests

Battery

thin-film device

Top articles of Wenxiao Huang

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

Nature Energy

2024/2/28

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

Advanced Materials

2023/8

A morphologically stable Li/electrolyte interface for all‐solid‐state batteries enabled by 3D‐micropatterned garnet

Advanced Materials

2021/10

Bright and stable light-emitting diodes made with perovskite nanocrystals stabilized in metal–organic frameworks

Nature Photonics

2021/11

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

Nature Energy

2021/8

Sensitive, portable heavy-metal-ion detection by the sulfidation method on a superhydrophobic concentrator (SPOT)

One Earth

2021/5/21

A review of existing and emerging methods for lithium detection and characterization in Li‐ion and Li‐metal batteries

Advanced Energy Materials

2021

Electrolyte-resistant dual materials for the synergistic safety enhancement of lithium-ion batteries

Nano letters

2021/2/18

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

ACS Energy Letters

2021/2/3

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

Nano Letters

2020/11/17

Microclusters of kinked silicon nanowires synthesized by a recyclable iodide process for high‐performance lithium‐ion battery anodes

Advanced Energy Materials

2020/11

Molecular design for electrolyte solvents enabling energy-dense and long-cycling lithium metal batteries

Nature Energy

2020/7

See List of Professors in Wenxiao Huang University(Stanford University)

Co-Authors

academic-engine