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Hybrid Photovoltaics - from Fundamentals towards Application

机译:混合光伏-从基础到应用

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In hybrid photovoltaics, an organic and an inorganic semiconductor are combined in the active layer, with the advantages of both material classes in a single device. The organic component contributes towards the possibility for wet chemical device preparation with potentially low costs in combination with achieving flexible devices. From the inorganic component an increase in stability, as well as superior opto-electronic properties, is added. Given the large diversity of organic and inorganic semiconductors, a large number of possible realizations of hybrid solar cells emerge. In the present review, we limit to hybrid solar cells which combine conjugated polymers with inorganic materials such as titanium dioxide, zinc oxide, silicon, germanium and quantum dots to keep focused. Particular emphasis is put on different routes to tailor nanostructures, such as the use of semiconductor block copolymers. The inorganic component is either synthesized directly in one of the blocks or added as a pre-synthesized nanomaterial to form the hybrid material. Alternatively, the block copolymer is used as a structure-directing template in a sol-gel synthesis approach to have tailored inorganic nanostructures, which are back-filled with the organic component to fabricate the hybrid material. Hybrid solar cells based on crystalline Si are discussed for comparison.
机译:在混合光伏中,有机和无机半导体结合在有源层中,并且在单个设备中具有两种材料类别的优点。有机组分有助于实现湿化学装置的制备,同时实现柔性装置,其成本可能较低。从无机组分中增加了稳定性以及优异的光电性能。考虑到有机和无机半导体的多样性,出现了许多混合太阳能电池的可能实现方式。在当前的审查中,我们限于将共轭聚合物与无机材料(例如二氧化钛,氧化锌,硅,锗和量子点)结合以保持聚焦的混合太阳能电池。特别强调的是调整纳米结构的不同途径,例如使用半导体嵌段共聚物。无机组分或者在一个嵌段中直接合成,或者作为预合成的纳米材料添加以形成杂化材料。或者,该嵌段共聚物在溶胶-凝胶合成方法中用作结构指导模板,以具有定制的无机纳米结构,将其与有机组分一起回填以制造杂化材料。为了比较,讨论了基于晶体硅的混合太阳能电池。

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