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Synthesis of micro- and nanosheets of CrCl3-RuCl3 solid solution by chemical vapour transport

机译:合成微和CrCl3-RuCl3 nanosheets固体化学蒸汽运输解决方案

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摘要

Solid solutions of 2D transition metal trihalides are rapidly growing in interest for the search for new 2D materials with novel properties at nanoscale dimensions. In this regard, we present a synthesis method for the Cr 1-x Ru x Cl 3 solid solution and describe the behaviour of the unit cell parameters over the whole composition range, which in general follows Vegard's law in the range of a = 5.958(6) CrCl 3 horizontal ellipsis 5.9731(5) RuCl 3 angstrom, b = 10.3328(20) CrCl 3 horizontal ellipsis 10.34606(21) RuCl 3 angstrom, c = 6.110(5) CrCl 3 horizontal ellipsis 6.0385(5) RuCl 3 angstrom and beta = 108.522(15) CrCl 3 horizontal ellipsis 108.8314(14) RuCl 3 degrees. The synthesized solid solution powder was subsequently used to deposit micro- and nanosheets directly on a substrate by applying chemical vapour transport in a temperature gradient of 575 degrees C -> 525 degrees C for 2 h and 650 degrees C -> 600 degrees C for 0.5 h as a bottom-up approach without the need for an external transport agent. The observed chromium chloride enrichment of the deposited crystals is predicted by thermodynamic simulation. The results allow for a nanostructure synthesis of this solid solution with a predictable composition down to about 30 nm in height and lateral size of several mu m. When applying a quick consecutive delamination step, it is possible to obtain few- and monolayer structures, which could be used for further studies of downscaling effects for the CrCl 3 -RuCl 3 solid solution. X-ray photoelectron spectroscopy, transmission electron microscopy and Raman spectroscopy were used to confirm the purity and quality of the synthesized crystals.
机译:2 d过渡金属trihalides固体的解决方案是搜索的快速增长的兴趣新的2 d材料具有新颖特性纳米级尺寸。Cr 1 - x的合成方法俄文x Cl 3固体解决方案和描述的行为胞参数在整个组成范围内,在一般遵循Vegard定律3 = 5.958 (6) CrCl范围水平省略10.34606水平省略号(21)RuCl 3埃,c = 6.110 (5) CrCl 3水平省略6.0385 (5)RuCl 3埃和β= 108.522 (15)CrCl 3水平省略号108.8314 (14)RuCl 3度。合成固溶体粉末随后用于存款微和nanosheets直接在衬底通过应用化学蒸汽运输温度梯度的575度C - > 525度C 2h和650度C - > 600度为0.5 h, C自底向上的方法而不需要一个外部运输代理。氯的浓缩沉积晶体预测的热力学模拟。允许纳米结构的合成结果这与一个可预测的固溶体下降到30 nm的身高和成分横向尺寸的几个μm。当应用快速连续分层的一步,它是可以获得一些单层结构,可用于进一步的研究CrCl 3 -RuCl 3固体降尺度效应解决方案。透射电子显微镜和拉曼光谱是用来确认纯洁和合成晶体的质量。

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