Jin Myung Kim

About Jin Myung Kim

Jin Myung Kim, With an exceptional h-index of 19 and a recent h-index of 18 (since 2020), a distinguished researcher at University of Illinois at Urbana-Champaign, specializes in the field of Materials Science.

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

Strain modulation in crumpled Si nanomembranes: Light detection beyond the Si absorption limit

MoS2 Passivated Multilayer Graphene Membranes for Li‐Ion Extraction From Seawater

Spatial Tuning of Light–Matter Interaction via Strain-Gradient-Induced Polarization in Freestanding Wrinkled 2D Materials

Near‐Field Nano‐Optical Imaging of van der Waals Materials

Dynamically tuning friction at the graphene interface using the field effect

Strain Engineering of Low‐Dimensional Materials for Emerging Quantum Phenomena and Functionalities

Role of thin film adhesion on capillary peeling

Strongly enhanced electromechanical coupling in atomically thin transition metal dichalcogenides

Jin Myung Kim Information

University

Position

___

Citations(all)

924

Citations(since 2020)

757

Cited By

439

hIndex(all)

19

hIndex(since 2020)

18

i10Index(all)

30

i10Index(since 2020)

25

Email

University Profile Page

Google Scholar

Jin Myung Kim Skills & Research Interests

Materials Science

Top articles of Jin Myung Kim

Strain modulation in crumpled Si nanomembranes: Light detection beyond the Si absorption limit

Science Advances

2024/1/12

MoS2 Passivated Multilayer Graphene Membranes for Li‐Ion Extraction From Seawater

Small

2023/5

Spatial Tuning of Light–Matter Interaction via Strain-Gradient-Induced Polarization in Freestanding Wrinkled 2D Materials

Nano Letters

2023/10/5

Near‐Field Nano‐Optical Imaging of van der Waals Materials

2023/10

Dynamically tuning friction at the graphene interface using the field effect

Nature communications

2023/9/19

Strain Engineering of Low‐Dimensional Materials for Emerging Quantum Phenomena and Functionalities

2023/7

Role of thin film adhesion on capillary peeling

Nano letters

2021/11/17

Strongly enhanced electromechanical coupling in atomically thin transition metal dichalcogenides

Materials Today

2021/7/1

Effects of layering and supporting substrate on liquid slip at the single-layer graphene interface

ACS nano

2021/6/11

Strain-resilient electrical functionality in thin-film metal electrodes using two-dimensional interlayers

Nature electronics

2021/2

Interaction of 2D materials with liquids: wettability, electrochemical properties, friction, and emerging directions

2020/12

Heterogeneous deformation of two-dimensional materials for emerging functionalities

2020/6

See List of Professors in Jin Myung Kim University(University of Illinois at Urbana-Champaign)