铁电性
材料科学
石墨烯
双极扩散
范德瓦尔斯力
凝聚态物理
纳米技术
磁滞
异质结
化学物理
光电子学
电介质
化学
物理
等离子体
有机化学
量子力学
分子
作者
Yibo Wang,Siqi Jiang,Jingkuan Xiao,Xiaofan Cai,Di Zhang,Ping Wang,Guodong Ma,Yaqing Han,Jiabei Huang,Kenji Watanabe,Takashi Taniguchi,Yanfeng Guo,Lei Wang,Alexander S. Mayorov,Geliang Yu
标识
DOI:10.1007/s11467-022-1175-0
摘要
Van der Waals (vdW) assembly of two-dimensional materials has long been recognized as a powerful tool for creating unique systems with properties that cannot be found in natural compounds [Nature 499, 419 (2013)]. However, among the variety of vdW heterostructures and their various properties, only a few have revealed metallic and ferroelectric behaviour signatures [Sci. Adv. 5, eaax5080 (2019); Nature 560, 336 (2018)]. Here we show ferroelectric semimetal made of double-gated double-layer graphene separated by an atomically thin crystal of hexagonal boron nitride. The structure demonstrates high room temperature mobility of the order of 10 m2·V−1·s−1 and exhibits ambipolar switching in response to the external electric field. The observed hysteresis is reversible and persists above room temperature. Our fabrication method expands the family of ferroelectric vdW compounds and offers a promising route for developing novel phase-changing devices. A possible microscopic model of ferroelectricity is discussed.
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