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基于钼的二维材料:合成、分散、剥离和薄膜沉积。

Molybdenum-based two-dimensional materials: Synthesis, dispersion, exfoliation and thin film deposition.

机构信息

Chemistry Department, Federal University of Paraná (UFPR), CP 19081, 81531-990 Curitiba, PR, Brazil.

Chemistry Department, Federal University of Paraná (UFPR), CP 19081, 81531-990 Curitiba, PR, Brazil.

出版信息

J Colloid Interface Sci. 2019 Oct 15;554:80-90. doi: 10.1016/j.jcis.2019.06.093. Epub 2019 Jun 28.

Abstract

We report a simple and effective route to synthesize, disperse, exfoliate and process different molybdenum-based 2-dimensional (2D) materials. Starting from a reaction between ammonium molybdate and ammonium sulfide solutions, a powder consisting of a mixture between amorphous molybdenum oxide and sulfide is obtained. By tuning the atmosphere and the temperature, different compositions can be prepared by thermal treatment of this sample: heat treatments in ambient atmosphere produce MoO with different morphologies, controllable according to the chosen temperature. On the other hand, heat treatments in inert atmosphere produce mixtures between crystalline 2D MoS and MoO. Further handling of these mixtures with acetonitrile separates the components due to the different solvent/solid affinities, with the layered MoS becoming homogeneously dispersed, and the MoO agglomerating as a solid easily removed by centrifugation. The resulting sulfide dispersions in acetonitrile present high stability, and they are constituted by exfoliated MoS, which means that acetonitrile is a tri-functional agent, separating the sulfide/oxide mixture, exfoliating the sulfide and stabilizing the dispersion. The MoS dispersions were used to produce homogeneous, freestanding and transparent thin films through the liquid-liquid interfacial route, which were easily deposited over different substrates and characterized by different techniques.

摘要

我们报告了一种简单有效的方法来合成、分散、剥离和处理不同的钼基二维(2D)材料。从钼酸铵和硫化铵溶液之间的反应开始,得到一种由非晶态氧化钼和硫化物混合物组成的粉末。通过调节气氛和温度,可以通过对该样品进行热处理来制备不同的组成:在环境气氛下的热处理会产生具有不同形貌的 MoO,可根据所选温度进行控制。另一方面,在惰性气氛下的热处理会产生结晶二维 MoS 和 MoO 的混合物。进一步用乙腈处理这些混合物,由于不同的溶剂/固体亲和力,会将各个成分分离开来,层状 MoS 均匀分散,MoO 则团聚成固体,通过离心很容易去除。在乙腈中得到的硫化物分散体具有高稳定性,并且由剥离的 MoS 组成,这意味着乙腈是一种三功能试剂,可分离硫化物/氧化物混合物、剥离硫化物并稳定分散体。MoS 分散体通过液-液界面途径用于制备均匀、独立和透明的薄膜,这些薄膜很容易沉积在不同的基底上,并通过不同的技术进行了表征。

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