铁电性
范德瓦尔斯力
化学
居里温度
极化(电化学)
凝聚态物理
静水压力
热的
磁滞
热滞后
热涨落
切换时间
极化密度
激发极化
热膨胀
环境压力
非易失性存储器
格子(音乐)
负热膨胀
流体静力平衡
电压
温度循环
电场
摄动(天文学)
热平衡
作者
Jiapeng Wang,Dong Wang,Zhen-Jie Guan,Xiangfu Xie,Niuzhuang Yang,Xuzhou Sun,Yuqiang Fang,Wen He,Zijian Zhang,Jierui Fu,Yue Liu,Ruize Lu,Xingyu Huang,Jinzhong Wang,Peng Tan,Gaoyang Gou,Hao Tian,Yang Ding,Liang Zhen,Fuqiang Huang
摘要
Harnessing atomic ordering through order–disorder transition is a powerful strategy to tailor electric polarization and functionality. However, most reported order–disorder ferroelectrics exhibit low Curie temperatures, narrow thermal hysteresis, and limited tunability, restricting their potential in nonvolatile memory technologies. Here, we identify VOCl2 as a new van der Waals order–disorder ferroelectric with site disorder, exhibiting an exceptionally wide thermal hysteresis (ΔT = 220 K) and a high Curie temperature (Tc = 440 K), associated with lattice expansion across the disorder to order transition. Moreover, the sensitivity of V4+ cations to structure distortions allows efficient polarization tuning under hydrostatic pressure, where pressure irreversibly induces the in-plane polarization at 2.3 GPa, and then drives a reversible polarization switching from in-plane to out-of-plane at 8.0 GPa. Such a giant thermal hysteresis and unusual polarization switching of VOCl2 open new opportunities for programmable phase-change devices with a broad operating window.
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