Jimin Kwon

Jimin Kwon

Stanford University

H-index: 17

North America-United States

About Jimin Kwon

Jimin Kwon, With an exceptional h-index of 17 and a recent h-index of 17 (since 2020), a distinguished researcher at Stanford University, specializes in the field of monolithic 3D integration, BEOL-compatible logic/memory, advanced packaging.

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

High energy density in artificial heterostructures through relaxation time modulation

Flexible field-effect transistors with high-quality and uniform single-layer graphene for high mobility

Effect of Back-Gate Dielectric on Indium Tin Oxide (ITO) Transistor Performance and Stability

Latent and controllable doping of stimuli-activated molecular dopants for flexible and printable organic thermoelectric generators

Effect of Top-Gate Dielectric Deposition on the Performance of Indium Tin Oxide Transistors

High performance carbon nanotubes thin film transistors by selective ferric chloride doping

Dual-gate thin film transistor lactate sensors operating in the subthreshold regime

Large Transconductance of Electrochemical Transistors Based on Fluorinated Donor–Acceptor Conjugated Polymers

Jimin Kwon Information

University

Position

___

Citations(all)

1587

Citations(since 2020)

1524

Cited By

520

hIndex(all)

17

hIndex(since 2020)

17

i10Index(all)

25

i10Index(since 2020)

25

Email

University Profile Page

Google Scholar

Jimin Kwon Skills & Research Interests

monolithic 3D integration

BEOL-compatible logic/memory

advanced packaging

Top articles of Jimin Kwon

Flexible field-effect transistors with high-quality and uniform single-layer graphene for high mobility

Semiconductor Science and Technology

2024/3/13

Effect of Back-Gate Dielectric on Indium Tin Oxide (ITO) Transistor Performance and Stability

IEEE Transactions on Electron Devices

2023/10/19

Latent and controllable doping of stimuli-activated molecular dopants for flexible and printable organic thermoelectric generators

Chemical Engineering Journal

2023/8/15

Effect of Top-Gate Dielectric Deposition on the Performance of Indium Tin Oxide Transistors

IEEE Electron Device Letters

2023/4/6

High performance carbon nanotubes thin film transistors by selective ferric chloride doping

Journal of Information Display

2023/4/3

Dual-gate thin film transistor lactate sensors operating in the subthreshold regime

Biosensors and Bioelectronics

2023/2/15

Large Transconductance of Electrochemical Transistors Based on Fluorinated Donor–Acceptor Conjugated Polymers

ACS Applied Materials & Interfaces

2023/1/2

3D Integration of Flexible and Printed Electronics: Integrated Circuits, Memories, and Sensors

2023

Bias stress stability of ITO transistors and its dependence on dielectric properties

2022/6/26

First demonstration of top-gated ITO transistors: Effect of channel passivation

2022/6/26

8-Layer 3D Vertical Ru/AlOxNy/TiN RRAM with Mega-Ω Level LRS for Low Power and Ultrahigh-density Memory

2022/6/12

Flexible and printed organic nonvolatile memory transistor with bilayer polymer dielectrics

Advanced Materials Technologies

2021/7

Programmable a-InGaZnO gate array with laser-induced forward transfer

Flexible and Printed Electronics

2021/3/18

Jimin Kwon
Jimin Kwon

H-Index: 11

Sungjune Jung
Sungjune Jung

H-Index: 23

Spatiotemporal measurement of arterial pulse waves enabled by wearable active-matrix pressure sensor arrays

ACS nano

2021/12/15

The future of hardware technologies for computing: N3XT 3D MOSAIC, illusion scaleup, co-design

2021/12/11

Jimin Kwon
Jimin Kwon

H-Index: 11

Layout-to-bitmap conversion and design rules for inkjet-printed large-scale integrated circuits

Langmuir

2021/9/1

Dual-pulse photoactivated atomic force microscopy

Scientific reports

2021/8/24

Stretchable Batteries: Stand‐Alone Intrinsically Stretchable Electronic Device Platform Powered by Stretchable Rechargeable Battery (Adv. Funct. Mater. 50/2020).

Advanced Functional Materials

2020/12/8

Stand‐alone intrinsically stretchable electronic device platform powered by stretchable rechargeable battery

Advanced Functional Materials

2020/12

See List of Professors in Jimin Kwon University(Stanford University)

Co-Authors

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