4.7 Article

Growth of out-of-plane standing MoTe2(1-x)Se2x /MoSe2 composite flake films by sol-gel nucleation of MoOy and isothermal closed space telluro-selenization

期刊

APPLIED SURFACE SCIENCE
卷 546, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.apsusc.2021.149076

关键词

Sol-gel; Transition metal oxides; Transition metal dichalcogenides; Isothermal closed space vapour transport; Out-of-plane growth

资金

  1. Ministerio de Ciencia e Innovacion (Spain) [CTQ2017-84309-C2-2-R]
  2. Consejo Superior de Investigaciones Cientificas (Spain) [PIE 2010 6 OE 013]

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This study successfully prepared MoTe2/MoSe2 composite films using sol-gel processing and isothermal closed space vapor transformation. These films have high surface area interfaces and are suitable for reactions with transition metal dichalcogenides.
This study describes the sol-gel processing of MoOy on Si (100) to subsequently achieve out-of-plane MoTe2/MoSe2 flake composite films by an isothermal closed space vapor transformation. The oxide precursor films have been prepared from a Mo isopropoxide solution in isopropanol and acid catalysis induced by HCl. Thermal annealing at 200, 400 and 600 degrees C enhanced the condensation after xerogel formation. An x-ray absorption analysis demonstrates that films condensed at 200 degrees C are at an intermediate chemical state between MoO3 and MoO2. To achieve MoTe2/MoSe2 composite films, the precursor oxide films were reduced in H-2 and exposed to the chalcogenides by isothermal closed space vapor transport at 600 degrees C. The multilayered nanocomposite films grow with an out-of-plane flake-like structure and an evident integration of Se in the MoTe2 phase according to a MoTe2(1-x)Se2x alloy, with an estimation of x of 0.25. The alloy and the orientation of the flakes are consistent with the bands present in the Raman spectrum. These films are attractive for applications requiring high surface area interfaces favoring gas or ion exchange reactions with transition metal dichalcogenides.

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