Zobrazeno 1 - 6
of 6
pro vyhledávání: '"HyunJin Joh"'
Autor:
Je Oh Choi, Tae Yeon Kim, Seong Min Park, WooJun Seol, Hyunjin Joh, Gopinathan Anoop, Ji Young Jo
Publikováno v:
Advanced Electronic Materials, Vol 9, Iss 4, Pp n/a-n/a (2023)
Abstract Ferroelectric (FE) capacitors exhibiting ultrahigh power densities are widely utilized as electrostatic energy storage devices in pulsed electronic devices. One approach to maximize the discharge energy density (Ud) of capacitors is to incre
Externí odkaz:
https://doaj.org/article/fc8054392e0149c2b4101258a87645b8
Autor:
Shibnath Samanta, Gopinathan Anoop, WooJun Seol, Seong Min Park, HyunJin Joh, Je Oh Choi, Dante Ahn, Sanjith Unithrattil, Hoon Kim, Jiwon Yeom, Seungbum Hong, Ji Young Jo
Publikováno v:
Journal of Materials Chemistry A. 10:9960-9970
Si/Y-HfO2/Pt shows a large electrocaloric temperature change (ΔT) of 24.84 K with high reliability on thermal and electrical field cycling.
Autor:
Je Oh Choi, Tae Yeon Kim, Seong Min Park, WooJun Seol, Hyunjin Joh, Gopinathan Anoop, Ji Young Jo
Publikováno v:
Advanced Electronic Materials. 9
Autor:
Won-June Lee, Dipjyoti Das, Seungbum Hong, WooJun Seol, Hoon Kim, Tae Yeon Kim, Jun Young Lee, Ji Young Jo, Gopinathan Anoop, Myung-Han Yoon, Sanghun Jeon, Jiwon Yeom, Hyunjin Joh
Publikováno v:
ACS Applied Electronic Materials. 3:1244-1251
Low-temperature deposition of inorganic ferroelectric (FE) thin films is highly demanded for lowering the environmental impact through lesser energy consumption. Doped HfO2-based FE thin films comm...
Autor:
WooJun Seol, Tae Yeon Kim, Sanjith Unithrattil, Jiwon Yeom, Hoon Kim, Jun Young Lee, Seungbum Hong, Ji Young Jo, Seong Min Park, Hyunjin Joh, Shibnath Samanta, Gopinathan Anoop
Publikováno v:
Advanced Materials Interfaces. 8:2100907
Autor:
WooJun Seol, Jun Young Lee, Shibnath Samanta, Hyeonghun Park, Ji Young Jo, Cheol Woong Shin, Gopinathan Anoop, Hyunjin Joh, Wan Sik Kim, Tae Yeon Kim
Publikováno v:
Journal of Alloys and Compounds. 853:157369
A major hindrance in developing ferroelectric (FE) devices based on non-centrosymmetric and eco-friendly wurtzite ZnO is its non-switchable polarization. Doping with smaller ionic radii cations induces switchable polarization in ZnO; however, the rem