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首页> 外文期刊>RSC Advances >Semitransparent polymer-based solar cells via simple wet lamination process with TiO2 layer using automatic spray layer-by-layer method
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Semitransparent polymer-based solar cells via simple wet lamination process with TiO2 layer using automatic spray layer-by-layer method

机译:半透明的基于聚合物的太阳能电池,通过简单的湿法层压工艺,采用自动喷涂逐层方法与TiO2层进行层压

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Semitransparent polymer-based solar cells are renewable, lightweight and low-cost energy sources and are attracting increasing attention in terms of both pure scientific research and commercial applications. The carrier transport layer in most polymer solar cells is composed of a TiO2 layer, and the thickness and homogeneity of this layer strongly influence the cell's power conversion efficiency. However, despite considerable development efforts, it is difficult to produce precisely-controlled TiO2 layers at room temperature with low fabrication times and without using materials that are toxic to humans. Here, we demonstrate semitransparent polymer-based solar cells fabricated via a simple wet lamination process with a TiO2 layer produced by an automatic spray layer-by-layer (spray-LBL) self-assembly method for improved solar cells. The spray-LBL method produced nano-ordered precursor films, composed of the non-toxic materials poly(diallyldimethylammonium chloride) (PDDA) and titanium(IV) bis(ammonium lactato) dihydroxide (TALH), from water solutions with high uniformity in a short fabrication time, and these films were then annealed to transform them into TiO2 layers at different temperatures. After TiO2 layer preparation, the polymer solar cells were fabricated via a lamination process. The resulting cells were semitransparent and generated electricity by using the incident light from both the front and back sides. These semitransparent polymer-based solar cells produced power conversion efficiencies of more than 2% by varying the TiO2 layer thickness via control of the spray-LBL process and the annealing temperature.
机译:基于半透明聚合物的太阳能电池是可再生,轻便和低成本的能源,在纯科学研究和商业应用方面都日益引起人们的关注。大多数聚合物太阳能电池中的载流子传输层由TiO2层组成,该层的厚度和均匀性强烈影响电池的功率转换效率。然而,尽管付出了巨大的开发努力,但是在室温下以短的制造时间并且不使用对人体有毒的材料来生产精确控制的TiO2层仍然很困难。在这里,我们演示了通过简单的湿法层压工艺制造的半透明聚合物基太阳能电池,该TiO2层采用自动逐层喷涂(spray-LBL)自组装方法生产,用于改进太阳能电池。喷雾LBL法在水溶液中以高均匀度在水溶液中制得了纳米级前体薄膜,该薄膜由无毒材料聚二烯丙基二甲基氯化铵(PDDA)和钛(IV)双(乳酸内铵)二氢氧化物(TALH)组成。短的制造时间,然后将这些薄膜退火以在不同温度下将其转变为TiO2层。在制备TiO 2层之后,通过层压工艺制造聚合物太阳能电池。所得的电池是半透明的,并通过使用来自正面和背面的入射光产生电能。这些半透明的聚合物基太阳能电池通过控制喷涂LBL工艺和退火温度来改变TiO2层的厚度,从而产生了超过2%的功率转换效率。

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