Simple Formation of Nanostructured Molybdenum Disulfide Thin Films by Electrodeposition

IF 2.3 Q3 ELECTROCHEMISTRY International journal of electrochemistry Pub Date : 2013-08-27 DOI:10.1155/2013/138419
S. K. Ghosh, C. Srivastava, S. Nath, J. Celis
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引用次数: 16

Abstract

Nanostructured molybdenum disulfide thin films were deposited on various substrates by direct current (DC) electrolysis form aqueous electrolyte containing molybdate and sulfide ions. Post deposition annealing at higher temperatures in the range 450–700°C transformed the as-deposited amorphous films to nanocrystalline structure. High temperature X-ray diffraction studies clearly recorded the crystal structure transformations associated with grain growth with increase in annealing temperature. Surface morphology investigations revealed featureless structure in case of as-deposited surface; upon annealing it converts into a surface with protruding nanotubes, nanorods, or dumbbell shape nanofeatures. UV-visible and FTIR spectra confirmed about the presence of Mo-S bonding in the deposited films. Transmission electron microscopic examination showed that the annealed MoS2 films consist of nanoballs, nanoribbons, and multiple wall nanotubes.
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电沉积法制备纳米二硫化钼薄膜
采用直流电解的方法,在含钼酸盐和硫化物离子的水溶液中制备了纳米二硫化钼薄膜。在450 ~ 700℃的高温下,沉积后的非晶态薄膜转变为纳米晶结构。高温x射线衍射研究清楚地记录了随退火温度升高晶粒生长的晶体结构变化。表面形貌研究表明,沉积表面无特征结构;退火后,它转化为具有突出的纳米管,纳米棒或哑铃形状纳米特征的表面。紫外可见光谱和红外光谱证实了沉积膜中存在Mo-S键。透射电镜检查表明,退火后的二硫化钼薄膜由纳米球、纳米带和多壁纳米管组成。
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审稿时长
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