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Obtaining copper selenide thick films on vitreous carbon, gold, titanium and copper

机译:在玻璃碳,金,钛和铜上获得硒化铜厚膜

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摘要

Copper selenide (berzelianite) films were prepared on the title substrates using the chemical bath deposition technique (CBD). Film composition was determined by energy dispersion of x-rays. The kinetics of film growth is parabolic and film adherence limits the film thickness. On titanium, copper selenide forms islands that do not completely cover the surface, unless the substrate is prepared with a tin oxide layer; film composition also depends on the titanium oxide layer. On vitreous carbon, CBD and mechanical immobilization techniques lead to films with similar resistances for the electron transfer across the film/substrate interface. On gold, composition studies revealed that film composition is always the same if the pH is in the range from 8 to 12, in contrast to films prepared by an ion-ion combination route. On copper, a new procedure for obtaining copper selenide films as thick as 5 µm has been developed.
机译:使用化学浴沉积技术(CBD)在标题基板上制备硒化铜(铍铜矿)膜。通过X射线的能量色散确定膜组成。薄膜生长的动力学是抛物线形的,薄膜的附着力限制了薄膜的厚度。除非在基板上准备了氧化锡层,否则硒化铜会在钛上形成无法完全覆盖表面的岛状结构。膜的组成还取决于氧化钛层。在玻璃碳上,CBD和机械固定技术会导致薄膜具有相似的电阻,从而使电子跨膜/基底界面转移。在金上,组成研究表明,与通过离子-离子结合途径制备的膜相比,如果pH在8至12范围内,则膜组成始终相同。在铜上,已经开发出一种新的方法来获得厚达5 µm的硒化铜膜。

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