Emerging Fluorite-Structured Antiferroelectrics and Their Semiconductor Applications

萤石 材料科学 反铁电性 铁电性 非易失性存储器 半导体 电容器 光电子学 纳米技术 电介质 电压 电气工程 工程类 冶金
作者
Geun Hyeong Park,Dong Hyun Lee,Hyojun Choi,Taegyu Kwon,Yong Hyeon Cho,Se Hyun Kim,Min Hyuk Park
出处
期刊:ACS applied electronic materials [American Chemical Society]
卷期号:5 (2): 642-663 被引量:12
标识
DOI:10.1021/acsaelm.2c01615
摘要

The ferroelectric properties of fluorite-structured oxides have attracted significant attention from researchers because of their potential applications in nonvolatile memory devices, which are enabled by their compatibility with the complementary metal oxide semiconductor technology and physical scalability to a thickness below 10 nm. Another important emerging property of these materials is their antiferroelectricity, which originates from the field-induced transition between the polar and nonpolar phases. Various applications of fluorite-structured antiferroelectrics, such as those in volatile logic devices and cell capacitors for dynamic random-access memory, engineered nonvolatile memory, and energy storage/conversion devices, have been recently proposed, although they have not been investigated in detail compared to fluorite-structured ferroelectrics. The volatile nature of fluorite-structured antiferroelectrics with a characteristic field-induced phase transition, which clearly distinguishes them from ferroelectrics, have endowed these materials with unique properties that cannot be achieved by ferroelectrics. Therefore, the emerging antiferroelectricity of fluorite-structured oxides is comprehensively reviewed in this paper from its fundamentals to various semiconductor applications based on the existing literature.
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