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Formation of new bulk-heterojunction structure in organic thin film solar cells

机译:在有机薄膜太阳能电池中形成新的散装异质结结构

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Organic solar cells were fabricated by stacking aromatic amine and C60 layers. The energy conversion efficiency of these solar cells was low because of poor photoabsorption by these layers and short diffusion length of excitons. However, the photocurrent density was increased by about 3 times by the application of heat treatment to the stacked organic layers at about 140 °C, and the maximum energy conversion efficiency reached 1.1% under AM 1.5, 100 mW/cm2 simulated solar light. The effect of the heat treatment was attributed to the infiltration of the amorphous aromatic amine compound into grain boundaries of the microcrystalline C60 layer. From observation by electron microscopy, the mixed form of these two compounds near the interface was found to be suited to solar cells because the C60 and aromatic amine phases wedge each other in a direction normal to two electrodes.
机译:通过堆叠芳族胺和C60层来制造有机太阳能电池。由于这些层的光吸收差和激子的短扩散长度,这些太阳能电池的能量转换效率低。然而,通过在约140℃的堆叠有机层施加热处理,光电流密度增加了约3次,并且最大能量转换效率在AM 1.5,100mW / cm2模拟太阳灯下达到1.1%。热处理的效果归因于无定形芳族胺化合物渗透到微晶C60层的晶界中。通过电子显微镜观察,发现界面附近的这两种化合物的混合形式适合于太阳能电池,因为C60和芳族胺相在正常到两个电极的方向上彼此楔形。

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