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Universal and versatile morphology engineering via hot fluorous solvent soaking for organic bulk heterojunction

机译:通过热流溶剂浸泡的通用和多功能形态学工程,用于有机散装异质结

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After explosive growth of efficiency in organic solar cells (OSCs), achieving ideal morphology of bulk heterojunction remains crucial and challenging for advancing OSCs into consumer market. Herein, by utilizing the amphiphobic nature and temperature-dependent miscibility of fluorous solvent, hot fluorous solvent soaking method is developed to optimize the morphology with various donor/acceptor combinations including polymer/small-molecule, all-polymer and all-small-molecule systems. By immersing blend film into hot fluorous solvent which is utilized as liquid medium with better thermal conductivity, the molecular reorganization is accelerated. Furthermore, fluorous solvent can be miscible with the residue of chloroform and chloronaphthalene above upper critical solution temperature. This mixed solvent diffuses around inside the active layer and selectively promotes molecular reorganization, leading to optimized morphology. Compared to widely-used thermal annealing, this approach processed under mild conditions achieves superior photovoltaic performance, indicating the practicality and universality for morphological optimization in OSCs as well as other optoelectronic devices. Morphology control of bulk heterojunction organic solar cells has been a challenge for realising optimal photovoltaic performance. Here, the authors utilise amphiphobic nature and temperature-dependent miscibility of fluorous solvent to promote molecular reorganisation and morphological optimisation.
机译:在有机太阳能电池(OSC)中效率的初步增长后,实现了散装异质结的理想形态仍然至关重要,挑战,使OSC进入消费市场。这里,通过利用氟溶剂的两亲性质和温度依赖性混溶,开发出热流荧光溶剂浸泡方法以优化各种供体/受体组合的形态,包括聚合物/小分子,全聚合物和全小分子系统。通过将共混膜浸入热流溶剂中,其用作具有更好的导热率的液体介质,分子重组加速。此外,氟溶剂可以与氯仿和氯萘的残余物混溶在上部临界溶液温度上方。这种混合溶剂在活性层内部扩散并选择性地促进分子重组,导致优化的形态。与广泛使用的热退火相比,在温和条件下处理的这种方法实现了优异的光伏性能,表明OSC中的形态优化的实用性和普遍性以及其他光电器件。散装异质结有机太阳能电池的形态控制是实现最佳光伏性能的挑战。在这里,作者利用氟溶剂的两亲性质和温度依赖性混溶性,促进分子重组和形态学优化。

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