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首页> 外文期刊>Angewandte Chemie >Liquid-Phase Epitaxial Growth of Two-Dimensional Semiconductor Hetero-nanostructures
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Liquid-Phase Epitaxial Growth of Two-Dimensional Semiconductor Hetero-nanostructures

机译:二维半导体异质纳米结构的液相外延生长

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摘要

Although many two-dimensional (2D) hybrid nanostructures are being prepared, the engineering of epitaxial 2D semiconductor hetero-nanostructures in the liquid phase still remains a challenge. The preparation of 2D semiconductor hetero-nanostructures by epitaxial growth of metal sulfide nanocrystals, including CuS, ZnS and Ni3S2, is achieved on ultrathin TiS2 nanosheets by a simple electrochemical approach by using the TiS2 crystal and metal foils. Ultrathin CuS nanoplates that are 50-120nm in size and have a triangular/hexagonal shape are epitaxially grown on TiS2 nanosheets with perfect epitaxial alignment. ZnS and Ni3S2 nanoplates can be also epitaxially grown on TiS2 nanosheets. As a proof-of-concept application, the obtained 2D CuS-TiS2 composite is used as the anode in a lithium ion battery, which exhibits a high capacity and excellent cycling stability.
机译:尽管正在准备许多二维(2D)杂化纳米结构,但液相中外延2D半导体异质纳米结构的工程设计仍然是一个挑战。通过使用TiS2晶体和金属箔通过简单的电化学方法,在超薄TiS2纳米片上通过外延生长包括CuS,ZnS和Ni3S2的金属硫化物纳米晶体来制备2D半导体异质纳米结构。尺寸为50-120nm且具有三角形/六边形形状的超薄CuS纳米板以完美的外延排列外延生长在TiS2纳米板上。 ZnS和Ni3S2纳米板也可以在TiS2纳米板上外延生长。作为概念验证的应用,所获得的2D CuS-TiS2复合材料被用作锂离子电池的阳极,它具有高容量和出色的循环稳定性。

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