Weipeng Xuan

Weipeng Xuan

Hangzhou Dianzi University

H-index: 28

Asia-China

About Weipeng Xuan

Weipeng Xuan, With an exceptional h-index of 28 and a recent h-index of 24 (since 2020), a distinguished researcher at Hangzhou Dianzi University, specializes in the field of Acoustic device, Triboelectronic.

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

Theoretical and Experimental Study of High-Electromechanical-Coupling Surface Acoustic Wave Resonators Based on A-Plane (1120)Al0.56Sc0.44N Films

A battery-less self-powered dual-parameter omnidirectional wireless sensing system based on symmetrical resonant circuit

An epidermal electrode based triboelectric walking energy harvester for wearable wireless sensing applications

Experimental study and application on a novel skin energy harvesting and storage system

Rational design and optimization of self-powered instantaneous dual-parameter triboelectric sensor

Compact and High Steep Skirts Hybrid Heterogeneous Integrated N77 Full band BAW Filter Based on Band-stop Theory

A Flexible Wireless Sacral Nerve Stimulator Based on Parity–Time Symmetry Condition

Human Body Electrode Enabled Direct Current Triboelectric Nanogenerator for Self‐Powered Wireless Human Motion and Environment Monitoring

Weipeng Xuan Information

University

Position

___

Citations(all)

2481

Citations(since 2020)

2019

Cited By

1084

hIndex(all)

28

hIndex(since 2020)

24

i10Index(all)

47

i10Index(since 2020)

45

Email

University Profile Page

Hangzhou Dianzi University

Google Scholar

View Google Scholar Profile

Weipeng Xuan Skills & Research Interests

Acoustic device

Triboelectronic

Top articles of Weipeng Xuan

Title

Journal

Author(s)

Publication Date

Theoretical and Experimental Study of High-Electromechanical-Coupling Surface Acoustic Wave Resonators Based on A-Plane (1120)Al0.56Sc0.44N Films

PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS

Weilun Xie

Weipeng Xuan

Danyang Fu

Yingqi Jiang

Qikun Wang

...

2024/2/27

A battery-less self-powered dual-parameter omnidirectional wireless sensing system based on symmetrical resonant circuit

Nano Energy

Chenhao Zhang

Jinkai Chen

Yue Zhou

Chi Zhang

Shiyuan Chang

...

2024/6/15

An epidermal electrode based triboelectric walking energy harvester for wearable wireless sensing applications

Science China Technological Sciences

ShiYuan Chang

FuHai Liu

JinKai Chen

LianBin Xia

Hao Zhou

...

2024/2/20

Experimental study and application on a novel skin energy harvesting and storage system

Journal of Energy Storage

Fuhai Liu

Shiyuan Chang

Lianbin Xia

Hao Zhou

Chi Zhang

...

2024/5/30

Rational design and optimization of self-powered instantaneous dual-parameter triboelectric sensor

Sensors and Actuators A: Physical

Yun Wu

Chenhao Zhang

Jinkai Chen

Hao Zhou

Chi Zhang

...

2024/2/1

Compact and High Steep Skirts Hybrid Heterogeneous Integrated N77 Full band BAW Filter Based on Band-stop Theory

IEEE Electron Device Letters

Rui Ding

Weipeng Xuan

Feng Gao

Hong Jiang

Wei Wang

...

2024/3/25

A Flexible Wireless Sacral Nerve Stimulator Based on Parity–Time Symmetry Condition

Electronics

Yue Ying

Yanlan Yu

Shurong Dong

Guoqing Ding

Weipeng Xuan

...

2024/1/9

Human Body Electrode Enabled Direct Current Triboelectric Nanogenerator for Self‐Powered Wireless Human Motion and Environment Monitoring

Advanced Electronic Materials

Lianbin Xia

Hao Zhou

Jinkai Chen

Fuhai Liu

Shiyuan Chang

...

2024/3/18

A Valveless Piezoelectric Micropump with Flexure Connection Structure

Jiafeng Ni

Weipeng Xuan

Yilin Li

Xiwei Huang

Wenjun Li

...

2023/7/2

Film bulk acoustic resonators with 400 MHz ultrawide-range tunability using crystalline PZT thin film

Materials Science in Semiconductor Processing

Xinyu Cai

Kaihang Zhang

Jianhui Wu

Jie Li

Hao Jin

...

2023/11/15

Numerical Study of Particle Separation through Integrated Multi-Stage Surface Acoustic Waves and Modulated Driving Signals

Sensors

Yingqi Jiang

Jin Chen

Weipeng Xuan

Yuhao Liang

Xiwei Huang

...

2023/1

Analytical and experimental study of a valveless piezoelectric micropump with high flowrate and pressure load

Microsystems & Nanoengineering

Jiafeng Ni

Weipeng Xuan

Yilin Li

Jinkai Chen

Wenjun Li

...

2023/6/5

High Electromechanical Coupling Coefficient of Longitudinally Excited Shear Wave Resonator Based on Optimized Bragg Structure

Micromachines

Zhiheng Zhang

Weipeng Xuan

Hong Jiang

Weilun Xie

Zhaoling Li

...

2023/11/11

rsc. li/analyst

Analyst

Kaho Maki

Ryoutarou Oishi

Tatsumi Mizuta

Kenji Sueyoshi

Tatsuro Endo

...

2022

High thermal stability of ultra-high temperature surface acoustic wave devices with multilayer composite electrodes

Journal of Alloys and Compounds

Daiqing Zhu

Yihong Zhang

Weipeng Xuan

Jinkai Chen

Miling Zhang

...

2023/5/15

Frequency tunable coherent perfect absorption and lasing in radio-frequency system for ultrahigh-sensitive sensing

Applied Physics Letters

Jianhui Wu

Jie Li

Chi Zhang

Yulu Liu

Liangquan Xu

...

2023/10/1

Recent advances in deformation-assisted microfluidic cell sorting technologies

Jingjing Sun

Xiwei Huang

Jin Chen

Rikui Xiang

Xiang Ke

...

2023

Machine learning assisted wearable wireless device for sleep apnea syndrome diagnosis

Biosensors

Shaokui Wang

Weipeng Xuan

Ding Chen

Yexin Gu

Fuhai Liu

...

2023/4/17

Body-based capacitive coupling and conductive channel power transfer for wearable and implant electronics

Nano Energy

Fuhai Liu

Hao Zhou

Lianbin Xia

Shiyuan Chang

Chi Zhang

...

2023/10/1

Finite element analysis and optimization of acoustically-actuated magnetoelectric microantennas

IEEE Transactions on Antennas and Propagation

Xinyu Cai

Kaihang Zhang

Tongxiang Zhao

Zhentao Yu

Jie Liang

...

2023/3/27

See List of Professors in Weipeng Xuan University(Hangzhou Dianzi University)

Co-Authors

H-index: 45
Shurong Dong

Shurong Dong

Zhejiang University

H-index: 34
JIN, Hao

JIN, Hao

Zhejiang University

H-index: 29
Jinkai Chen

Jinkai Chen

Hangzhou Dianzi University

academic-engine