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首页> 外文期刊>Applied Surface Science >Structural, chemical and optical properties of the polyethylene-copper sulfide composite thin films synthesized using polythionic acid as sulfur source
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Structural, chemical and optical properties of the polyethylene-copper sulfide composite thin films synthesized using polythionic acid as sulfur source

机译:以聚对苯二甲酸为硫源合成的聚乙烯-铜硫化物复合薄膜的结构,化学和光学性质

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Synthesis and properties of thin copper sulfide films deposited on polyethylene were explored for the development of low cost hybrid organic-inorganic photovoltaic materials. Polyethylene was used as a model organic host material for thin copper sulfide film formation. Adsorption-diffusion method was used which utilized consecutive exposure of polyethylene to polythionic acid followed by aqueous Cu(II/I) solution. Several crystalline copper sulfide phases were obtained in synthesized samples and elucidated using X-ray diffraction. Surface chemical composition determined using X-ray photoelectron spectroscopy showed the presence of copper sulfides in combination with copper hydroxide. Thickness of the composite material films ranged from several microns to similar to 18 mu m and depended on the Cu(II/I) exposure time. Bandgap of the materials obtained was measured and ranged from 1.88 to 1.17 eV. Importantly, heating these complex copper sulfide crystalline phase containing films at 100 degrees C in inert atmosphere invariably resulted in a single copper sulfide, anilite (Cu1.75S), phase. Anilite possesses a bandgap of 1.36 eV and has demonstrated excellent photovoltaic properties. Thus, the method described in this work can be used for a low cost large scale composite thin film photovoltaic material deposition based on anilite as photoactive material. (C) 2015 Elsevier B.V. All rights reserved.
机译:探索了沉积在聚乙烯上的硫化铜薄膜的合成和性能,以开发低成本的有机-无机杂化光伏材料。聚乙烯被用作硫化铜薄膜形成的模型有机基质材料。使用了吸附-扩散方法,该方法利用了将聚乙烯连续暴露于聚亚硫酸中,然后再暴露于Cu(II / I)水溶液中的方法。在合成样品中获得了多个结晶硫化铜相,并使用X射线衍射进行了阐明。使用X射线光电子能谱测定的表面化学组成表明,硫化铜与氢氧化铜结合存在。复合材料膜的厚度范围从几微米到接近18微米,并且取决于Cu(II / I)的暴露时间。测量获得的材料的带隙,范围为1.88至1.17eV。重要的是,在惰性气氛中将这些含有复杂硫化铜结晶相的薄膜在100摄氏度下加热,总是会生成单一的硫化铜苯胺石(Cu1.75S)相。苯胺具有1.36 eV的带隙,并显示出优异的光伏性能。因此,该工作中描述的方法可用于基于苯胺石作为光敏材料的低成本大规模复合薄膜光伏材料沉积。 (C)2015 Elsevier B.V.保留所有权利。

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