Chullhee Cho

About Chullhee Cho

Chullhee Cho, With an exceptional h-index of 10 and a recent h-index of 9 (since 2020), a distinguished researcher at University of Illinois at Urbana-Champaign, specializes in the field of Interfacial/Strain engineering, 2D/3D Nanomanufacturing, Flexible electronics, Optoelectronics, Cryogenics.

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

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

Curved neuromorphic image sensor array using a MoS2-organic heterostructure inspired by the human visual recognition system (vol 11, 5934, 2020)

Exclaim: the experiment for cryogenic large-aperture intensity mapping

Author Correction: Curved neuromorphic image sensor array using a MoS2-organic heterostructure inspired by the human visual recognition system

Experiment for cryogenic large-aperture intensity mapping: instrument design

Strongly enhanced electromechanical coupling in atomically thin transition metal dichalcogenides

Highly Strain-Tunable Interlayer Excitons in MoS2/WSe2 Heterobilayers

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

Chullhee Cho Information

University

Position

___

Citations(all)

511

Citations(since 2020)

466

Cited By

90

hIndex(all)

10

hIndex(since 2020)

9

i10Index(all)

10

i10Index(since 2020)

9

Email

University Profile Page

Google Scholar

Chullhee Cho Skills & Research Interests

Interfacial/Strain engineering

2D/3D Nanomanufacturing

Flexible electronics

Optoelectronics

Cryogenics

Top articles of Chullhee Cho

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

Nano Letters

2023/10/5

Curved neuromorphic image sensor array using a MoS2-organic heterostructure inspired by the human visual recognition system (vol 11, 5934, 2020)

Nature communications

2020/11/23

Exclaim: the experiment for cryogenic large-aperture intensity mapping

American Astronomical Society Meeting Abstracts

2024/2

Author Correction: Curved neuromorphic image sensor array using a MoS2-organic heterostructure inspired by the human visual recognition system

nature communications

2022

Experiment for cryogenic large-aperture intensity mapping: instrument design

Journal of Astronomical Telescopes, Instruments, and Systems

2021/10/1

Strongly enhanced electromechanical coupling in atomically thin transition metal dichalcogenides

Materials Today

2021/7/1

Highly Strain-Tunable Interlayer Excitons in MoS2/WSe2 Heterobilayers

Nano letters

2021/4/29

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

Tunable piezoelectricity of multifunctional boron nitride nanotube/poly (dimethylsiloxane) stretchable composites

Advanced Materials

2020/10

Heterogeneous deformation of two-dimensional materials for emerging functionalities

2020/6

See List of Professors in Chullhee Cho University(University of Illinois at Urbana-Champaign)