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首页> 外文期刊>Advanced Functional Materials >Self-Assembled Dense Colloidal Cu2Te Nanodisk Networks in P3HT Thin Films with Enhanced Photocurrent
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Self-Assembled Dense Colloidal Cu2Te Nanodisk Networks in P3HT Thin Films with Enhanced Photocurrent

机译:具有增强光电流的P3HT薄膜中的自组装致密胶体Cu2Te纳米盘网络

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摘要

The integration of colloidal nanocrystals with polymers adds optoelectronic functionalities to flexible and mechanically robust organic films. In particular, self-assembled structures of nanocrystals in polymers can act as functional components enhancing, for instance, transport or optical properties of the hybrid material. This study presents Cu2Te hexagonal nanodisks that assemble into ribbons with a face-to-face configuration in poly(3-hexylthiophene-2,5-diyl) through a controlled solvent evaporation process. The ribbons form weaving patterns that create 3D networks fully embedded in the thin polymer film at high nanodisk concentration. The photoresponse of these composite films measured in a layered vertical geometry demonstrates increased photocurrent with increasing nanocrystal loading. This study attributes this behavior to the presence of networks of Cu2Te nanodisks that form a bulk heterojunction with the semiconducting polymer, which improves exciton dissociation and the overall photoelectric response.
机译:胶体纳米晶体与聚合物的集成为柔性和机械坚固的有机薄膜增加了光电功能。特别地,聚合物中纳米晶体的自组装结构可以用作功能成分,例如增强杂化材料的传输或光学性质。这项研究提出了Cu2Te六角形纳米盘,通过受控的溶剂蒸发过程将它们组装成具有聚对(3-己基噻吩-2,5-二基)面对面结构的带。色带形成编织图案,从而在高纳米磁盘浓度下创建完全嵌入聚合物薄膜中的3D网络。以分层的垂直几何形状测量的这些复合膜的光响应表明,随着纳米晶体负载的增加,光电流增加。这项研究将这种行为归因于Cu2Te纳米盘网络的存在,该网络与半导体聚合物形成本体异质结,从而改善了激子离解和整体光电响应。

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