Electronic and Hybrid Materials Research Center / Principal Research Scientist @ KIST
Address
Building L3, Room 3272,
Korea Institute of Science and Technology (KIST)
5, Hwarang-ro 14-gil Seongbuk-gu Seoul,
02792, Republic of Korea
(02792) 서울특별시 성북구 화랑로 14길5
한국과학기술연구원(KIST) L3272호
E-mail thkim79@kist.re.kr
Tel +82 02-958-5485
Seoul Nat’l Univ
Ph.D. Dept. of Physics and Astronomy
Thesis: "Polarization Switching Kinetics in Ferroelastic BiFeO3 Films" advised by Prof. T. W. Noh
Korea
2006. 3 ~ 2012. 2
Seoul Nat’l Univ
B.S. Dept. of Physics and Astronomy
Korea
1998. 3 ~ 2006. 2
KIST (Korea Institute of Science and Technology)
Principal Research Scientist @ Electronic and Hybrid Materials Research Center
Seoul, Korea
?? ~ Present
Univ. of Ulsan
Associate Professor, Dept. of Physics
Korea
2021. 9 ~ ??
Univ. of Ulsan
Assistant Professor, Dept. of Physics
Korea
2016. 9 ~ 2021. 8
Univ. of Wisconsin-Madison
Post-doc., Dept. of Materials Science and Engineering
United States
2012. 6 ~ 2016. 8
Seoul Nat’l Univ
Post-doc., Dept. of Physics and Astronomy
Korea
2012. 3 ~ 2012. 5
1. Perovskite oxide/calcogenide/halide, ...
2. Ferroelectrics/piezoelectrics, multiferroics, polar metals, ...
3. Antiferrovskite, layered perovskite, hybrid perovskite, ...
C. W. Ahn et al., "Highly ordered lead-free double perovskite halides by design", J. Materiomics 6, 651 (2020).
T. H. Kim et al., "Strain-driven disproportionation at a correlated oxide metal-insulator transition", Phys. Rev. B 101, 121105(R) (2020).
M. Sheeraz et al., "Enhanced Ferroelectricity in Perovskite Oxysulfides", Phys. Rev. Mater. 3, 084405 (2019).
A. Ullah et al., “Giant room-temperature electrostrictive coefficients in lead-free relaxor ferroelectric ceramics by compositional tuning”, APL Mater. 6, 016104 (2018).
T. H. Kim et al., “Polar metals by geometric design”, Nature 533, 68 (2016).
T. H. Kim et al., “Continuous Control of Charge Transport in Bi-Deficient BiFeO3 Films Through Local Ferroelectric Switching”, Adv. Funct. Mater. 22, 4962 (2012).
T. H. Kim et al., "Electric-field-controlled directional motion of ferroelectric domain walls in multiferroic BiFeO3 films", Appl. Phys. Lett. 95, 262902 (2009).