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High energy density in artificial heterostructures through relaxation time modulation.

Authors :
Sangmoon Han
Kim, Justin S.
Eugene Park
Yuan Meng
Zhihao Xu
Foucher, Alexandre C.
Gwan Yeong Jung
Ilpyo Roh
Sangho Lee
Sun Ok Kim
Ji-Yun Moon
Seung-Il Kim
Sanggeun Bae
Xinyuan Zhang
Bo-In Park
Yimeng Li
Heechang Shin
Reidy, Kate
Anh Tuan Hoang
Sundaram, Suresh
Source :
Science. 4/19/2024, Vol. 384 Issue 6693, p312-317. 6p. 4 Diagrams.
Publication Year :
2024

Abstract

Electrostatic capacitors are foundational components of advanced electronics and high-power electrical systems owing to their ultrafast charging-discharging capability. Ferroelectric materials offer high maximum polarization, but high remnant polarization has hindered their effective deployment in energy storage applications. Previous methodologies have encountered problems because of the deteriorated crystallinity of the ferroelectric materials. We introduce an approach to control the relaxation time using two-dimensional (2D) materials while minimizing energy loss by using 2D/3D/2D heterostructures and preserving the crystallinity of ferroelectric 3D materials. Using this approach, we were able to achieve an energy density of 191.7 joules per cubic centimeter with an efficiency greater than 90%. This precise control over relaxation time holds promise for a wide array of applications and has the potential to accelerate the development of highly efficient energy storage systems. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00368075
Volume :
384
Issue :
6693
Database :
Academic Search Index
Journal :
Science
Publication Type :
Academic Journal
Accession number :
176712343
Full Text :
https://doi.org/10.1126/science.adl2835