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Combining Vacuum Deposited with Solution Processed Layers in Organic Solar Cell

机译:结合真空沉积与有机太阳能电池中的溶液处理层

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Heterojunction cells are the subject of much current research. They can be differentiated by their production processes: solution processing and vacuum processing. Both production processes have advantages and disadvantages. Solution processed devices have the advantages of monodisperity and simple synthesis, but the use of solution processing is limited to soluble conjugated polymers due to their ability to form a smooth film on spin coated materials and the devices are characterised by lower mobilities due to their disordered structures. Vacuum processing can lead to relatively high throughput and sequential stacking of well-defined layers and extraction of exciton diffusion lengths can be performed. Vacuum processed devices, however, tend to suffer from lower efficiencies.Our approach is based on combining vacuum deposited active layers with solution processed layers in organic photovoltaic cells using pentacene and buckminsterfiillerene.
机译:异质结细胞是许多当前研究的主题。它们可以通过其生产过程来区分:溶液处理和真空处理。两种生产工艺都有优点和缺点。溶液处理的装置具有单分散性和合成简单的优点,但是由于溶液处理在旋涂材料上形成平滑膜的能力,因此溶液处理的使用仅限于可溶性共轭聚合物,并且由于其无序结构,装置的迁移率较低。真空处理可能会导致较高的吞吐量,并且顺序堆叠定义明确的层,并且可以提取激子扩散长度。然而,真空处理过的设备往往效率较低。 我们的方法是基于使用并五苯和buckminsterfiillerene在有机光伏电池中结合真空沉积的活性层和溶液处理层。

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