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Adaptable surfactant-mediated method for the preparation of anisotropic metal chalcogenide nanomaterials

机译:适应性的表面活性剂介导的各向异性金属硫族化物纳米材料的制备方法

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摘要

The hot injection synthesis of nanomaterials is a highly diverse and fundamental field of chemical research, which has shown much success in the bottom up approach to nanomaterial design. Here we report a synthetic strategy for the production of anisotropic metal chalcogenide nanomaterials of different compositions and shapes, using an optimised hot injection approach. Its unique advantage compared to other hot injection routes is that it employs one chemical to act as many agents: high boiling point, viscous solvent, reducing agent, and surface coordinating ligand. It has been employed to produce a range of nanomaterials, such as CuS, Bi2S3, Cu2-xSe, FeSe2, and Bi4Se3, among others, with various structures including nanoplates and nanosheets. Overall, this article will highlight the excellent versatility of the method, which can be tuned to produce many different materials and shapes. In addition, due to the nature of the synthesis, 2D nanomaterial products are produced as monolayers without the need for exfoliation; a significant achievement towards future development of these materials.
机译:纳米材料的热注射合成是化学研究的一个高度多样化和基础领域,在自下而上的纳米材料设计方法中已显示出很大的成功。在这里,我们报告了使用优化的热注射方法生产具有不同组成和形状的各向异性金属硫族化物纳米材料的合成策略。与其他热注射途径相比,它的独特优势在于它采用一种化学物质作为多种试剂:高沸点,粘性溶剂,还原剂和表面配位体。它已被用于生产各种纳米材料,例如CuS,Bi2S3,Cu2-xSe,FeSe2和Bi4Se3等,具有各种结构,包括纳米板和纳米片。总体而言,本文将重点介绍该方法的出色通用性,可以对其进行调整以产生许多不同的材料和形状。另外,由于合成的性质,二维纳米材料产品以单层形式生产,而无需剥离。这些材料的未来发展取得了重大成就。

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