Jun Yao

Jun Yao

University of Massachusetts Amherst

H-index: 32

North America-United States

About Jun Yao

Jun Yao, With an exceptional h-index of 32 and a recent h-index of 24 (since 2020), a distinguished researcher at University of Massachusetts Amherst, specializes in the field of Nanoelectronics, Bioelectronics, Nanomaterials.

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

Enabling reliable two-terminal memristor network by exploiting the dynamic reverse recovery in a diode selector

Graphene-integrated mesh electronics with converged multifunctionality for tracking multimodal excitation-contraction dynamics in cardiac microtissues

An Effective Sneak‐Path Solution Based on a Transient‐Relaxation Device

Generic Air‐gen Effect in Nanoporous Materials for Sustainable Energy Harvesting from Air Humidity

Memristor device comprising protein nanowires

Microbial nanowires with genetically modified peptide ligands to sustainably fabricate electronic sensing devices

Protein nanowire thin films for the potential of constructing green electronic devices

Recent Progress in Bio-voltage Memristors Working with Ultralow Voltage of Biological Amplitude

Jun Yao Information

University

Position

Assistant Professor

Citations(all)

6591

Citations(since 2020)

2782

Cited By

4909

hIndex(all)

32

hIndex(since 2020)

24

i10Index(all)

43

i10Index(since 2020)

36

Email

University Profile Page

University of Massachusetts Amherst

Google Scholar

View Google Scholar Profile

Jun Yao Skills & Research Interests

Nanoelectronics

Bioelectronics

Nanomaterials

Top articles of Jun Yao

Title

Journal

Author(s)

Publication Date

Enabling reliable two-terminal memristor network by exploiting the dynamic reverse recovery in a diode selector

Device

Tianda Fu

Shuai Fu

Siqi Wang

Jun Yao

2024/3/20

Graphene-integrated mesh electronics with converged multifunctionality for tracking multimodal excitation-contraction dynamics in cardiac microtissues

Nature Communications

Hongyan Gao

Zhien Wang

Feiyu Yang

Xiaoyu Wang

Siqi Wang

...

2024/3/14

An Effective Sneak‐Path Solution Based on a Transient‐Relaxation Device

Advanced Materials

Tianda Fu

Shuai Fu

Lu Sun

Hongyan Gao

Jun Yao

2023/1

Generic Air‐gen Effect in Nanoporous Materials for Sustainable Energy Harvesting from Air Humidity

Advanced Materials

Xiaomeng Liu

Hongyan Gao

Lu Sun

Jun Yao

2023/5/5

Memristor device comprising protein nanowires

2023/4/18

Microbial nanowires with genetically modified peptide ligands to sustainably fabricate electronic sensing devices

Biosensors and Bioelectronics

Yassir Lekbach

Toshiyuki Ueki

Xiaomeng Liu

Trevor Woodard

Jun Yao

...

2023/4/15

Protein nanowire thin films for the potential of constructing green electronic devices

Jun Yao

2023/1/31

Recent Progress in Bio-voltage Memristors Working with Ultralow Voltage of Biological Amplitude

Nanoscale

Tianda Fu

Shuai Fu

Jun Yao

2023

Two-Terminal MoS2 Memristor and the Homogeneous Integration with a MoS2 Transistor for Neural Networks

Nano Letters

Shuai Fu

Ji-Hoon Park

Hongyan Gao

Tianyi Zhang

Xiang Ji

...

2023/6/20

Bioinspired two-in-one nanotransistor sensor for the simultaneous measurements of electrical and mechanical cellular responses

Science Advances

Hongyan Gao

Feiyu Yang

Kianoosh Sattari

Xian Du

Tianda Fu

...

2022/8/24

Microbial biofilms for electricity generation from water evaporation and power to wearables

Nature Communications

Xiaomeng Liu

Toshiyuki Ueki

Hongyan Gao

Trevor L Woodard

Kelly P Nevin

...

2022/7/28

Self-sustained green neuromorphic interfaces

Nature communications

Tianda Fu

Xiaomeng Liu

Shuai Fu

Trevor Woodard

Hongyan Gao

...

2021/6/7

Intrinsically conductive microbial nanowires for ‘green’electronics with novel functions

Trends in biotechnology

Derek R Lovley

Jun Yao

2021/1/6

Electric power generation from ambient humidity using protein nanowires

2021/11/4

Sensors Comprising Electrically-conductive Protein Nanowires

2021/11/4

Power generation from ambient humidity using protein nanowires

Nature

Xiaomeng Liu

Hongyan Gao

Joy E Ward

Xiaorong Liu

Bing Yin

...

2020/2/27

Spin filtering in germanium/silicon core/shell nanowires with pseudo-helical gap

Applied Physics Letters

Jian Sun

Russell S Deacon

Xiaochi Liu

Jun Yao

Koji Ishibashi

2020/8/3

Multifunctional Protein Nanowire Humidity Sensors for Green Wearable Electronics

Advanced Electronic Materials

Xiaomeng Liu

Tianda Fu

Joy Ward

Hongyan Gao

Bing Yin

...

2020/9

Bioelectronic protein nanowire sensors for ammonia detection

Nano Research

Alexander F Smith

Xiaomeng Liu

Trevor L Woodard

Tianda Fu

Todd Emrick

...

2020/5

Bioinspired bio-voltage memristors

Nature communications

Tianda Fu

Xiaomeng Liu

Hongyan Gao

Joy E Ward

Xiaorong Liu

...

2020/4/20

See List of Professors in Jun Yao University(University of Massachusetts Amherst)