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首页> 外文期刊>ACS applied materials & interfaces >Viscous Conductive Glue Layer in Semitransparent Polymer-Based Solar Cells Fabricated by a Lamination Process
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Viscous Conductive Glue Layer in Semitransparent Polymer-Based Solar Cells Fabricated by a Lamination Process

机译:层压工艺制备的半透明聚合物基太阳能电池中的粘性导电胶层

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摘要

Semitransparent polymer-based solar cells were fabricated by using a low-cost, vacuum-free lamination process. This process is to deposit a conductive glue solution on the transparent Ag film, followed by lamination with the active layer. The glue solution and a mixture of poly(3,4-ethyl- enedioxythiophene): poly(styrenesulfonate) (PEDOT:PSS) and n-sorbitol was used. To . allow future improvements in the conversion efficiency of these cells, we investigated the relationship between major factors of the conductive glue layer and photovoltaic property. As a result, it was suggested that photovoltaic property had less of a relation to conductivity of the conductive glue layer but a strong correlation with the contact area within a certain range of the film thickness of the conductive glue layer. The optimized cells exhibited 2.22% and 2.41% of power conversion efficiencies during front and backside 100 mW cm~(-2) AM1.5G illumination with reflection paper, respectively.
机译:通过使用低成本,无真空的层压工艺来制造基于半透明聚合物的太阳能电池。该过程是在透明的Ag膜上沉积导电胶溶液,然后与活性层层压。使用胶溶液和聚(3,4-乙基-二烯二氧基噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)和正山梨醇的混合物。至 。为了进一步改善这些电池的转换效率,我们研究了导电胶层的主要因素与光伏性能之间的关系。结果表明,光伏性质与导电胶层的导电性的关系较小,但是与导电胶层的膜厚度的一定范围内的接触面积具有强相关性。优化后的电池在正面和背面用反射纸照射100 mW cm〜(-2)AM1.5G时分别表现出2.22%和2.41%的功率转换效率。

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