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Chemical Vapor Deposition Synthesis of Intrinsic High-Temperature Ferroelectric 2D CuCrSe 2 .

Ping WangYang ZhaoRui NaWeikang DongJingyi DuanYue ChengBoyu XuDenan KongJijian LiuShuang DuChunyu ZhaoYang YangLu LvQingmei HuHui AiYan XiongVasily S StolyarovShoujun ZhengYao ZhouFang DengJiadong Zhou
Published in: Advanced materials (Deerfield Beach, Fla.) (2024)
Ultrathin 2D ferroelectrics with high Curie temperature are critical for multifunctional ferroelectric devices. However, the ferroelectric spontaneous polarization is consistently broken by the strong thermal fluctuations at high temperature, resulting in the rare discovery of high-temperature ferroelectricity in 2D materials. Here, a chemical vapor deposition method is reported to synthesize 2D CuCrSe 2 nanosheets. The crystal structure is confirmed by scanning transmission electron microscopy characterization. The measured ferroelectric phase transition temperature of ultrathin CuCrSe 2 is about ≈800 K. Significantly, the switchable ferroelectric polarization is observed in ≈5.2 nm nanosheet. Moreover, the in-plane and out-of-plane ferroelectric response are modulated by different maximum bias voltage. This work provides a new insight into the construction of 2D ferroelectrics with high Curie temperature.
Keyphrases
  • high temperature
  • electron microscopy
  • crystal structure
  • metal organic framework
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  • light emitting