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Facile large scale synthesis of WS2 nanotubes from WO3 nanorods prepared by a hydrothermal route

机译:通过水热路径制备的WO3纳米棒的WS2纳米管的体积大规模合成

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Hexagonal WO3 nanorods of 5-50 nm in diameter and 150-250 nm in length have been synthesised in gram quantities by a low temperature hydrothermal route using citric acid as a structural modifier and hexadecylamine as a templating agent. The ratio of [A]/[W] play an important role on WO3 nanorods formation. These WO3 nanorods were found highly suitable as a precursor for the synthesis of a good yield of multiwalled WS2 nanotubes by reducing them with H2S at 840 degreesC for 30 min. The length and the wall thickness of the WS2 nanotubes could be altered by controlled reduction of the oxide precursor. The morphology, structure and the composition of the WO3 nanorods and WS2 nanotubes were characterised by X-ray diffraction (XRD), high resolution transmission electron microscopy (HRTEM), energy dispersive X-ray analysis (EDX) and by selected area electron diffraction techniques (SAED).(C) 2004 Elsevier SAS. All rights reserved.
机译:通过使用柠檬酸作为结构改性剂和六癸胺作为模板剂,通过低温水热途径合成5-50nm的直径为5-50nm的六边形WO3纳米棒和150-250nm的长度合成。 [a] / [w]的比例在WO3纳米棒形成上发挥着重要作用。 发现这些WO3纳米棒非常适合作为在840℃下用H 2 S在840℃的H 2 S中减少多壁WS2纳米管的良好产率的前体。 通过控制氧化物前体的减少,可以改变WS2纳米管的长度和壁厚。 通过X射线衍射(XRD),高分辨率透射电子显微镜(HRTEM),能量分散X射线分析(EDX)以及通过选定的区域电子衍射技术表征WO3纳米棒和WS2纳米管的形态,结构和组合物。 (SAED)。(c)2004年ELSEVIER SAS。 版权所有。

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