铁电性
材料科学
半导体
非易失性存储器
压电响应力显微镜
磁滞
光电子学
纳米技术
量子隧道
亚稳态
铁电电容器
极化(电化学)
外延
记忆电阻器
工程物理
表征(材料科学)
电容器
凝聚态物理
作者
Jiaying Shen,Weng Fu Io,Chang Liu,Yiyang Wen,Han Wu,Yilin Cao,Yongtao Yang,DONG Dianmeng,Fan Zhang,Songhua Cai,Wei Ren,Xianran Xing,Yang Zhang,Zhenping Wu,Jianhua Hao
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-02-11
卷期号:12 (7): eaec5225-eaec5225
被引量:9
标识
DOI:10.1126/sciadv.aec5225
摘要
For decades, the integration of power handling and nonvolatile memory has been fundamentally impeded by the incompatibility between wide-bandgap semiconductors and ferroelectric materials. We resolve this challenge by demonstrating robust room-temperature ferroelectricity in epitaxial metastable κ-Ga 2 O 3 , grown via industry-compatible metal-organic chemical vapor deposition, creating an intrinsically ferroelectric wide-bandgap semiconductor. Through systematic characterization including piezoresponse force microscopy, polarization hysteresis measurements, and positive up–negative down tests, we provide conclusive evidence of stable ferroelectric switching down to 5-nanometer thickness—exceeding conventional ferroelectric limits—via a unique octahedral-tetrahedral transformation. Ferroelectric tunnel junctions achieve giant tunneling electroresistance exceeding 10 5 . This fundamental discovery in a mainstream semiconductor challenges conventional materials paradigms and enables monolithic integration of power and memory functionalities on a unified platform.
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