Shinhee Yun

Shinhee Yun

KAIST

H-index: 6

Asia-South Korea

About Shinhee Yun

Shinhee Yun, With an exceptional h-index of 6 and a recent h-index of 6 (since 2020), a distinguished researcher at KAIST, specializes in the field of Condensed matter physics.

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

Strain Engineering: Perfecting Freestanding Perovskite Oxide Fabrication

Transition Metal‐Oxide Nanomembranes Assembly by Direct Heteroepitaxial Growth

Twisted oxide membranes: A perspective

Detection of the prototype symmetry of ferroelastic domain walls by angle-resolved polarized Raman spectroscopy

Tuning Oxide Properties by Oxygen Vacancy Control During Growth and Annealing

Engineering of Electromechanical Oxides by Symmetry Breaking

Reconstruction of Low Dimensional Electronic States by Altering the Chemical Arrangement at the SrTiO3 Surface

Manipulating Organic Semiconductor Morphology with Visible Light (Adv. Funct. Mater. 10/2023)

Shinhee Yun Information

University

Position

Ph. D. student @

Citations(all)

128

Citations(since 2020)

124

Cited By

13

hIndex(all)

6

hIndex(since 2020)

6

i10Index(all)

5

i10Index(since 2020)

5

Email

University Profile Page

Google Scholar

Shinhee Yun Skills & Research Interests

Condensed matter physics

Top articles of Shinhee Yun

Strain Engineering: Perfecting Freestanding Perovskite Oxide Fabrication

Small (Weinheim an der Bergstrasse, Germany)

2024/3

Shinhee Yun
Shinhee Yun

H-Index: 2

Transition Metal‐Oxide Nanomembranes Assembly by Direct Heteroepitaxial Growth

Advanced Functional Materials

2024

Twisted oxide membranes: A perspective

APL Materials

2024/1/1

Detection of the prototype symmetry of ferroelastic domain walls by angle-resolved polarized Raman spectroscopy

Physical Review B

2023/7/10

Tuning Oxide Properties by Oxygen Vacancy Control During Growth and Annealing

JoVE (Journal of Visualized Experiments)

2023/6/9

Engineering of Electromechanical Oxides by Symmetry Breaking

2023/6

Reconstruction of Low Dimensional Electronic States by Altering the Chemical Arrangement at the SrTiO3 Surface

Advanced Functional Materials

2023/5

Manipulating Organic Semiconductor Morphology with Visible Light (Adv. Funct. Mater. 10/2023)

Advanced Functional Materials

2023/3

Post-lithiation: a way to control the ionic conductivity of solid-state thin film electrolyte

Materials Advances

2023

Stacking and twisting of freestanding complex oxide thin films

Advanced Materials

2022/9

Freestanding perovskite oxide films: Synthesis, challenges, and properties

2022/9

Enabling Roll-Processed and Flexible Organic Solar Cells Based On PffBT4T Through Temperature-Controlled Slot-Die Coating

IEEE Journal of Photovoltaics

2022/1/25

Disclosing the response of the surface electronic structure in SrTiO3 (001) to strain

Journal of Vacuum Science & Technology A

2022/1/1

Enabling roll-processed and flexible OSCs based on PffBT4T-C9C13 through temperature controlled slot-die coating

2021

Flexopiezoelectricity at ferroelastic domain walls in WO3 films

Nature communications

2020/9/29

See List of Professors in Shinhee Yun University(KAIST)

Co-Authors

academic-engine