Yunsik Ohm

Yunsik Ohm

Carnegie Mellon University

H-index: 8

North America-United States

About Yunsik Ohm

Yunsik Ohm, With an exceptional h-index of 8 and a recent h-index of 8 (since 2020), a distinguished researcher at Carnegie Mellon University, specializes in the field of Wearable Electronics, Soft Materials, Soft conductors, Hydrogels, Conductive hydrogel composites.

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

Reconfigurable electrical networks within a conductive hydrogel composite

A self-healing electrically conductive organogel composite

A comparative study of silver microflakes in digitally printable liquid metal embedded elastomer inks for stretchable electronics

Acoustic Localization and Communication Using a MEMS Microphone for Low-cost and Low-power Bio-inspired Underwater Robots

Liquid metal polymer composites: From printed stretchable circuits to soft actuators

Composites of functional polymers: Toward physical intelligence using flexible and soft materials

Soft, Stretchable, Conductive Hydrogel Composites

An electrically conductive silver–polyacrylamide–alginate hydrogel composite for soft electronics

Yunsik Ohm Information

University

Position

Ph.D. Candidate

Citations(all)

697

Citations(since 2020)

693

Cited By

119

hIndex(all)

8

hIndex(since 2020)

8

i10Index(all)

7

i10Index(since 2020)

7

Email

University Profile Page

Google Scholar

Yunsik Ohm Skills & Research Interests

Wearable Electronics

Soft Materials

Soft conductors

Hydrogels

Conductive hydrogel composites

Top articles of Yunsik Ohm

Reconfigurable electrical networks within a conductive hydrogel composite

Advanced Materials

2023/4

A self-healing electrically conductive organogel composite

Nature Electronics

2023/3

A comparative study of silver microflakes in digitally printable liquid metal embedded elastomer inks for stretchable electronics

Advanced Materials Technologies

2022/12

Acoustic Localization and Communication Using a MEMS Microphone for Low-cost and Low-power Bio-inspired Underwater Robots

2022/10/23

Liquid metal polymer composites: From printed stretchable circuits to soft actuators

2022/2/14

Composites of functional polymers: Toward physical intelligence using flexible and soft materials

2022/1/14

Soft, Stretchable, Conductive Hydrogel Composites

2022

Yunsik Ohm
Yunsik Ohm

H-Index: 3

An electrically conductive silver–polyacrylamide–alginate hydrogel composite for soft electronics

Nature Electronics

2021/3

See List of Professors in Yunsik Ohm University(Carnegie Mellon University)

Co-Authors

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