Xiaojia Jia

Xiaojia Jia

Georgia Institute of Technology

H-index: 7

North America-United States

About Xiaojia Jia

Xiaojia Jia, With an exceptional h-index of 7 and a recent h-index of 7 (since 2020), a distinguished researcher at Georgia Institute of Technology,

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

High Sensitivity Stable Sensors And Methods For Manufacturing Same

Extraction of intrinsic contact resistance in organic thin-film transistors with single channel length and high capacitance density

Organic photodetector with built-in amplification for the detection of visible light with low optical power

Benzocyclobutene polymer as an additive for a benzocyclobutene-fullerene: application in stable p–i–n perovskite solar cells

Effects of particle inclusions on cracking in ultrathin barrier films

OptoSense: Towards ubiquitous self-powered ambient light sensing surfaces

Organic thin-film transistors with a bottom bilayer gate dielectric having a low operating voltage and high operational stability

Impact of interface materials on side permeation in indirect encapsulation of organic electronics

Xiaojia Jia Information

University

Position

Ph.D. Student in Electrical and Computer Engineering

Citations(all)

239

Citations(since 2020)

221

Cited By

119

hIndex(all)

7

hIndex(since 2020)

7

i10Index(all)

6

i10Index(since 2020)

6

Email

University Profile Page

Google Scholar

Top articles of Xiaojia Jia

High Sensitivity Stable Sensors And Methods For Manufacturing Same

2022/4/21

Extraction of intrinsic contact resistance in organic thin-film transistors with single channel length and high capacitance density

Applied Physics Letters

2021/12/27

Organic photodetector with built-in amplification for the detection of visible light with low optical power

Organic Electronics

2021/3/1

Benzocyclobutene polymer as an additive for a benzocyclobutene-fullerene: application in stable p–i–n perovskite solar cells

Journal of Materials Chemistry A

2021

Effects of particle inclusions on cracking in ultrathin barrier films

Thin Solid Films

2020/11/30

OptoSense: Towards ubiquitous self-powered ambient light sensing surfaces

Proceedings of the ACM on interactive, mobile, wearable and ubiquitous technologies

2020/9/4

Organic thin-film transistors with a bottom bilayer gate dielectric having a low operating voltage and high operational stability

ACS Applied Electronic Materials

2020/8/12

Impact of interface materials on side permeation in indirect encapsulation of organic electronics

Journal of Vacuum Science & Technology A

2020/5/1

See List of Professors in Xiaojia Jia University(Georgia Institute of Technology)