Zhenan Bao

Zhenan Bao

Stanford University

H-index: 208

North America-United States

About Zhenan Bao

Zhenan Bao, With an exceptional h-index of 208 and a recent h-index of 153 (since 2020), a distinguished researcher at Stanford University,

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

Autonomous self-healing supramolecular polymer transistors for skin electronics

Shape-memory-assisted self-healing of macroscopic punctures via high-energy-density periodic dynamic polymers with tunable actuation temperature

Devices and methods involving stable or stretchable polymer

Capacitive and tactile sensors and related sensing methods

Strain-Induced Performance Variation in Stretchable Carbon-Nanotube Thin-Film Transistors and the Solution Through a Circular Channel Design

Fast and reversible thermoresponsive polymer switching materials for safer batteries (vol 1, 15009, 2016)

Publisher Correction: Fast and reversible thermoresponsive polymer switching materials for safer batteries

High-speed and large-scale intrinsically stretchable integrated circuits

Zhenan Bao Information

University

Position

___

Citations(all)

166437

Citations(since 2020)

83649

Cited By

115796

hIndex(all)

208

hIndex(since 2020)

153

i10Index(all)

736

i10Index(since 2020)

559

Email

University Profile Page

Google Scholar

Top articles of Zhenan Bao

Autonomous self-healing supramolecular polymer transistors for skin electronics

Nature Communications

2024/4/23

Shape-memory-assisted self-healing of macroscopic punctures via high-energy-density periodic dynamic polymers with tunable actuation temperature

Matter

2024/4/18

Devices and methods involving stable or stretchable polymer

2024/4/11

Capacitive and tactile sensors and related sensing methods

2024/1/2

Strain-Induced Performance Variation in Stretchable Carbon-Nanotube Thin-Film Transistors and the Solution Through a Circular Channel Design

IEEE Transactions on Electron Devices

2024/3/28

Fast and reversible thermoresponsive polymer switching materials for safer batteries (vol 1, 15009, 2016)

Nature Energy

2016/1/11

Publisher Correction: Fast and reversible thermoresponsive polymer switching materials for safer batteries

Nature Energy

2024/3/19

Ion-conductive organic networks for battery applications

2024/2/20

Solvation-property relationship of lithium-sulphur battery electrolytes

Nature Communications

2024/2/10

Gradual Electrical‐Double‐Layer Modulation in Ion‐Polymer Networks for Flexible Pressure Sensors with Wide Dynamic Range (Adv. Funct. Mater. 7/2024)

Advanced Functional Materials

2024/2

Underwater adhesive from dynamic polymers

2024/2/1

Network evolution controlling strain-induced damage and self-healing of elastomers with dynamic bonds

arXiv preprint arXiv:2401.11087

2024/1/20

Sequence-dependent self-assembly of supramolecular nanofibers in periodic dynamic block copolymers

Journal of Materials Chemistry A

2024

Genetically targeted chemical assembly

2024/1

Impact of the fluorination degree of ether-based electrolyte solvents on Li-metal battery performance

Journal of Materials Chemistry A

2024

Liquid and solid electrolytes with lithium-fluorine solvation structure for lithium-metal batteries

2023/4/20

Autonomous alignment and self-healing in multilayer soft electronics using dynamic polymers with immiscible backbones

2023/4/3

Soft and stretchable organic bioelectronics for continuous intraoperative neurophysiological monitoring during microsurgery

Nature Biomedical Engineering

2023/10

A low-power stretchable neuromorphic nerve with proprioceptive feedback

Nature Biomedical Engineering

2023/4

See List of Professors in Zhenan Bao University(Stanford University)