Multiferroic-field coupling in ultrathin nanofilm halide perovskite at room temperature

Citations

WEB OF SCIENCE

9
Citations

SCOPUS

10

초록

New materials with unique properties and nanostructures are essential for high-efficiency multibit devices to implement next-generation core logic and memory functions. Herein, a high-quality single-phase ultrathin nanofilm organicinorganic hybrid perovskite nanostructure without transition metals is proposed. (C4H9NH3)(2)PbI2Br2 is a multifield coupling material with ferroic orders coexisting at room temperature (300 K). The domain rotation is controlled by adjusting the electric field strength using magnetoelectricity and ferroelectricity. The responsiveness and phase controllability of ferromagnetism, ferroelectricity, and piezoelectricity in ultra-thin nanofilm hybrid perovskites are successfully controlled through the external electric field induced by the coupling between the ferroic orders at room temperature. This study shows that high-quality nanostructured perovskites are suitable materials for high-efficiency multibit devices.

키워드

MultiferroicMultifield couplingUltrathin nanofilmOrganic-inorganic hybrid perovskiteHigh-energy-efficiency multibit devicesEMISSIONFERROELECTRICITYFERROMAGNETISMHYSTERESISCRYSTALSPROGRESSCATIONSSTORAGEORIGIN
제목
Multiferroic-field coupling in ultrathin nanofilm halide perovskite at room temperature
저자
Kim, Young-SeongJin, ZhengyunPark, Min WookJeon, Hee ChangLim, Joong Yeon
DOI
10.1016/j.mtphys.2023.101109
발행일
2023-06
유형
Article
저널명
Materials Today Physics
35
페이지
1 ~ 8