Peiyi Wu

Peiyi Wu

Fudan University

H-index: 85

Asia-China

About Peiyi Wu

Peiyi Wu, With an exceptional h-index of 85 and a recent h-index of 65 (since 2020), a distinguished researcher at Fudan University, specializes in the field of soft materials, hydrogel, spectroscopy, membrane, ionic skin.

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

Peeling–Stiffening Self‐Adhesive Ionogel with Superhigh Interfacial Toughness

Hierarchically Structured Bioinspired Fibers Shaped by Liquid Droplets

Self-compliant ionic skin by leveraging hierarchical hydrogen bond association

Near-Frictionless Long-Distance Water Transport in Trees Enabled by Hierarchically Helical Molecular Pumps

Piezoionic Elastomers by Phase And Interface Engineering for High‐Performance Energy‐Harvesting Ionotronics

A Solid‐Liquid Bicontinuous Fiber with Strain‐Insensitive Ionic Conduction

Amphibious polymer materials with high strength and superb toughness in various aquatic and atmospheric environments

Readily prepared and processed multifunctional MXene nanocomposite hydrogels for smart electronics

Peiyi Wu Information

University

Position

professor of polymer science and Donghua University

Citations(all)

23213

Citations(since 2020)

14108

Cited By

14012

hIndex(all)

85

hIndex(since 2020)

65

i10Index(all)

318

i10Index(since 2020)

223

Email

University Profile Page

Fudan University

Google Scholar

View Google Scholar Profile

Peiyi Wu Skills & Research Interests

soft materials

hydrogel

spectroscopy

membrane

ionic skin

Top articles of Peiyi Wu

Title

Journal

Author(s)

Publication Date

Peeling–Stiffening Self‐Adhesive Ionogel with Superhigh Interfacial Toughness

Advanced Materials

Yingkun Shi

Baohu Wu

Shengtong Sun

Peiyi Wu

2024/3

Hierarchically Structured Bioinspired Fibers Shaped by Liquid Droplets

Advanced Functional Materials

Yanjun Liu

Jialin Zhang

Peiyi Wu

2024/3

Self-compliant ionic skin by leveraging hierarchical hydrogen bond association

Nature Communications

Huating Ye

Baohu Wu

Shengtong Sun

Peiyi Wu

2024/1/30

Near-Frictionless Long-Distance Water Transport in Trees Enabled by Hierarchically Helical Molecular Pumps

CCS Chemistry

Yanjun Liu

Jialin Zhang

Peiyi Wu

2024/4/17

Piezoionic Elastomers by Phase And Interface Engineering for High‐Performance Energy‐Harvesting Ionotronics

Advanced Materials

Weiyan Zhu

Baohu Wu

Zhouyue Lei*

Peiyi Wu*

2024/1/26

A Solid‐Liquid Bicontinuous Fiber with Strain‐Insensitive Ionic Conduction

Advanced Materials

Huating Ye

Baohu Wu

Shengtong Sun

Peiyi Wu

2024/4/1

Amphibious polymer materials with high strength and superb toughness in various aquatic and atmospheric environments

Advanced Materials

Hongbo Wan

Baohu Wu

Lei Hou

Peiyi Wu

2024/1

Readily prepared and processed multifunctional MXene nanocomposite hydrogels for smart electronics

SmartMat

Jiahui Huang

Xianwu Huang

Peiyi Wu

2024/4

Double Hydrogen‐bonding Reinforced High‐Performance Supramolecular Hydrogel Thermocell for Self‐powered Sensing Remote‐Controlled by Light

Advanced Functional Materials

Xiaofang Shi

Lin Ma

Yingjie Li

Zhenpu Shi

Qingcong Wei

...

2023/2

Synergetic lithium and hydrogen bonds endow liquid‐free photonic ionic elastomer with mechanical robustness and electrical/optical dual‐output

Advanced Materials

Lei Peng

Lei Hou

Peiyi Wu

2023/5

Guiding Zn Uniform Deposition with Polymer Additives for Long‐lasting and Highly Utilized Zn Metal Anodes

Angewandte Chemie

Doudou Feng

Yucong Jiao

Peiyi Wu

2023/12/18

Short-term plasticity, multimodal memory, and logical responses mimicked in stretchable hydrogels

Matter

Zhouyue Lei

Peiyi Wu

2023/2/1

Non‐equilibrium‐Growing Aesthetic Ionic Skin for Fingertip‐Like Strain‐Undisturbed Tactile Sensation and Texture Recognition

Advanced Materials

Haiyan Qiao

Shengtong Sun

Peiyi Wu

2023/5

3D Printing of Ionogels with Complementary Functionalities Enabled by Self‐Regulating Ink

Advanced Science

Jiahui Huang

Zhenchuan Yu

Peiyi Wu

2023/8

Proton‐reservoir hydrogel electrolyte for long‐term cycling Zn/PANI batteries in wide temperature range

Angewandte Chemie International Edition

Doudou Feng

Yucong Jiao

Peiyi Wu

2023/1/2

Aqueous spinning of robust, self-healable, and crack-resistant hydrogel microfibers enabled by hydrogen bond nanoconfinement

Nature Communications

Yingkun Shi

Baohu Wu

Shengtong Sun

Peiyi Wu

2023/3/13

Alleviating side reactions on Zn anodes for aqueous batteries by a cell membrane derived phosphorylcholine zwitterionic protective layer

Angewandte Chemie

Zhen Meng

Yucong Jiao

Peiyi Wu

2023/8/1

Manipulating Zn 002 deposition plane with zirconium ion crosslinked hydrogel electrolyte toward dendrite free Zn metal anodes

Energy & Environmental Science

Yong Cheng

Yucong Jiao

Peiyi Wu

2023

Highly damping and self‐healable ionic elastomer from dynamic phase separation of sticky fluorinated polymers

Advanced Materials

Huai Xiang

Xiaoxia Li

Baohu Wu

Shengtong Sun

Peiyi Wu

2023/3

A breakthrough in fabric cleaning: coating-at-will concept for stainproof fabrics

Science China Chemistry

Zhouyue Lei

Peiyi Wu

2024

See List of Professors in Peiyi Wu University(Fudan University)

Co-Authors

H-index: 36
Shengtong Sun (孙胜童)

Shengtong Sun (孙胜童)

Donghua University

H-index: 26
Zhouyue Lei (雷周玥)

Zhouyue Lei (雷周玥)

Harvard University

H-index: 19
Hou Lei

Hou Lei

Donghua University

H-index: 17
BINGJIE SUN (Jennifer)

BINGJIE SUN (Jennifer)

University of California, San Diego

academic-engine