Kening Wan

Kening Wan

Queen Mary University of London

H-index: 15

Europe-United Kingdom

About Kening Wan

Kening Wan, With an exceptional h-index of 15 and a recent h-index of 14 (since 2020), a distinguished researcher at Queen Mary University of London,

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

Fibrous Conductive Metallogels with Hybrid Electron/Ion Networks for Boosted Extreme Sensitivity and High Linearity Strain Sensor

Articular cartilage-inspired 3D superelastic and fatigue-resistant spongy conductors against harsh environments

Optimization of thermoelectric properties of carbon nanotube veils by defect engineering

Thermospun Conductive Composites with a Wide Strain Range, Excellent Fatigue Resistance, and High Linearity for Fibrous Strain Sensors

Toward Self-Powered Sensing and Thermal Energy Harvesting in High-Performance Composites via Self-Folded Carbon Nanotube Honeycomb Structures

Thermo-spun reaction encapsulation fabrication of environment-stable and knittable fibrous ionic conductors with large elasticity and high fatigue resistance

Stretchable, environment-stable, and knittable ionic conducting fibers based on metallogels for wearable wide-range and durable strain sensors

Kirigami inspired shape programmable and reconfigurable multifunctional nanocomposites for 3D structures

Kening Wan Information

University

Position

___

Citations(all)

858

Citations(since 2020)

838

Cited By

208

hIndex(all)

15

hIndex(since 2020)

14

i10Index(all)

19

i10Index(since 2020)

19

Email

University Profile Page

Queen Mary University of London

Google Scholar

View Google Scholar Profile

Top articles of Kening Wan

Title

Journal

Author(s)

Publication Date

Fibrous Conductive Metallogels with Hybrid Electron/Ion Networks for Boosted Extreme Sensitivity and High Linearity Strain Sensor

Macromolecular Rapid Communications

Jifeng Li

Kening Wan

Tianyi Zhu

Yong Zheng

Ziyin Chen

...

2024/2

Articular cartilage-inspired 3D superelastic and fatigue-resistant spongy conductors against harsh environments

Science China Materials

Tianyi Zhu

Qichun Feng

Kening Wan

Chao Zhang

Bin Li

...

2023/4

Optimization of thermoelectric properties of carbon nanotube veils by defect engineering

Materials Horizons

Chongyang Zeng

Pietro Stenier

Kan Chen

Kening Wan

Ming Dong

...

2023

Thermospun Conductive Composites with a Wide Strain Range, Excellent Fatigue Resistance, and High Linearity for Fibrous Strain Sensors

ACS Applied Engineering Materials

Junfeng Han

Kening Wan

Ziyin Chen

Wei Wu

Jifeng Li

...

2023/10/4

Toward Self-Powered Sensing and Thermal Energy Harvesting in High-Performance Composites via Self-Folded Carbon Nanotube Honeycomb Structures

ACS Applied Materials & Interfaces

Kening Wan

Arnaud Kernin

Leonardo Ventura

Chongyang Zeng

Yushen Wang

...

2023/9/11

Thermo-spun reaction encapsulation fabrication of environment-stable and knittable fibrous ionic conductors with large elasticity and high fatigue resistance

Chemical Engineering Journal

Qichun Feng

Kening Wan

Tianyi Zhu

Chao Zhang

Tianxi Liu

2022/5/1

Stretchable, environment-stable, and knittable ionic conducting fibers based on metallogels for wearable wide-range and durable strain sensors

ACS applied materials & interfaces

Qichun Feng

Kening Wan

Tianyi Zhu

Xiaoshan Fan

Chao Zhang

...

2022/1/17

Kirigami inspired shape programmable and reconfigurable multifunctional nanocomposites for 3D structures

Materials & Design

Arnaud Kernin

Leonardo Ventura

Aaron Soul

Kan Chen

Kening Wan

...

2022/12/1

Cryo‐spun encapsulation of polyaniline‐based conducting hydrogels with high sensitivity, wide‐range linearity, and environmental stability for fibrous strain sensors

Journal of Polymer Science

Qichun Feng

Kening Wan

Chao Zhang

Tianxi Liu

2022/9/15

A waterproof ion‐conducting fluorinated elastomer with 6000% stretchability, superior ionic conductivity, and harsh environment tolerance

Advanced Functional Materials

Peiru Shi

Yufeng Wang

Kening Wan

Chao Zhang

Tianxi Liu

2022/5

Polyaniline-decorated 3D carbon porous network with excellent electrolyte wettability and high energy density for supercapacitors

Composites Communications

Siliang Liu

Kening Wan

Chao Zhang

Tianxi Liu

2021/4/1

Static and dynamic postannealing strategies for roll-to-roll fabrication of DC magnetron sputtered bismuth telluride thin films onto polymer webs

ACS Applied Materials & Interfaces

Xudong Tao

Bryan W Stuart

Kening Wan

James W Murray

Emiliano Bilotti

...

2021/2/22

Highly stretchable and sensitive self-powered sensors based on the N-Type thermoelectric effect of polyurethane/Nax (Ni-ett) n/graphene oxide composites

Composites Communications

Kening Wan

Zilu Liu

Bob C Schroeder

Guangming Chen

Giovanni Santagiuliana

...

2021/12/1

Superelastic, fatigue-resistant, and flame-retardant spongy conductor for human motion detection against a harsh high-temperature condition

ACS Applied Materials & Interfaces

Zhichong Liu

Kening Wan

Tianyi Zhu

Jixin Zhu

Jingsan Xu

...

2021/2/5

Thermoelectric materials: Current status and future challenges

Peter A Finn

Ceyla Asker

Kening Wan

Emiliano Bilotti

Oliver Fenwick

...

2021/8/19

Self-powered ultrasensitive and highly stretchable temperature–strain sensing composite yarns

Materials Horizons

Kening Wan

Yi Liu

Giovanni Santagiuliana

Giandrin Barandun

Prospero Junior Taroni

...

2021/7/12

Hydrogen-bonded network enables semi-interpenetrating ionic conductive hydrogels with high stretchability and excellent fatigue resistance for capacitive/resistive bimodal sensors

Chemical Engineering Journal

Ao Wang

Yufeng Wang

Bing Zhang

Kening Wan

Jixin Zhu

...

2021/5/1

Dense hydrogen-bonding network boosts ionic conductive hydrogels with extremely high toughness, rapid self-recovery, and autonomous adhesion for human-motion detection

Research

Bing Zhang

Xu Zhang

Kening Wan

Jixin Zhu

Jingsan Xu

...

2021/4/14

BixTey thermoelectric thin films sputtered at room temperature onto moving polymer web: Effect of gas pressure on materials properties

Thin Solid Films

Xudong Tao

Kening Wan

Bryan W Stuart

Emiliano Bilotti

Hazel E Assender

2020/10/31

Vapor grown carbon nanofiber based cotton fabrics with negative thermoelectric power

Cellulose

AJ Paleo

EMF Vieira

K Wan

O Bondarchuk

MF Cerqueira

...

2020/10

See List of Professors in Kening Wan University(Queen Mary University of London)

Co-Authors

H-index: 50
Chao Zhang (张超)

Chao Zhang (张超)

Donghua University

H-index: 46
Emiliano Bilotti

Emiliano Bilotti

Queen Mary University of London

H-index: 44
Bob C. Schroeder

Bob C. Schroeder

University College London

H-index: 30
Han Zhang

Han Zhang

Queen Mary University of London

H-index: 15
Yi Liu

Yi Liu

Loughborough University

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