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pi-Conjugated Microporous Polymer Films: Designed Synthesis, Conducting Properties, and Photoenergy Conversions

机译:π共轭微孔聚合物膜:设计合成,导电性能和光能转换。

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摘要

Conjugated microporous polymers are a unique class of polymers that combine extended -conjugation with inherent porosity. However, these polymers are synthesized through solution-phase reactions to yield insoluble and unprocessable solids, which preclude not only the evaluation of their conducting properties but also the fabrication of thin films for device implementation. Here, we report a strategy for the synthesis of thin films of -conjugated microporous polymers by designing thiophene-based electropolymerization at the solution-electrode interface. High-quality films are prepared on a large area of various electrodes, the film thickness is controllable, and the films are used for device fabrication. These films are outstanding hole conductors and, upon incorporation of fullerenes into the pores, function as highly efficient photoactive layers for energy conversions. Our film strategy may boost the applications in photocatalysis, energy storage, and optoelectronics.
机译:共轭微孔聚合物是一类独特的聚合物,它将延长的共轭与固有的孔隙率结合在一起。然而,这些聚合物是通过溶液相反应合成的,产生不溶性和不可处理的固体,这不仅排除了对其导电性能的评估,而且也排除了用于器件实现的薄膜的制造。在这里,我们报告了一种通过在溶液-电极界面设计基于噻吩的电聚合来合成-共轭微孔聚合物薄膜的策略。在大面积的各种电极上制备高质量的薄膜,薄膜的厚度是可控的,并且该薄膜用于器件制造。这些薄膜是出色的空穴导体,并且在将富勒烯掺入孔中后,可充当用于能量转换的高效光敏层。我们的胶片策略可能会促进光催化,能量存储和光电领域的应用。

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