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A Windmill-Shaped Molecule with Anthryl Blades to Form Smooth Hole-Transport Layers via a Photoprecursor Approach

机译:带有蒽基叶片的风车形分子通过光致前体方法形成光滑的空穴传输层

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摘要

Preparation of high-performance organic semiconductor devices requires precise control over the active-layer structure. To this end, we are working on the controlled deposition of small-molecule semiconductors through a photoprecursor approach wherein a soluble precursor compound is processed into a thin-film form and then converted to a target semiconductor by light irradiation. This approach can be applied to layer-by-layer solution deposition, enabling the preparation of p–i–n-type photovoltaic active layers by wet processing. However, molecular design principles are yet to be established toward obtaining desirable thin-film morphology via this unconventional method. Herein, we evaluate a new windmill-shaped molecule with anthryl blades, 1,3,5-tris(5-(anthracen-2-yl)thiophen-2-yl)benzene, which is designed to deposit via the photoprecursor approach for use as the p-sublayer in p–i–n-type organic photovoltaic devices (OPVs). The new compound is superior to the corresponding precedent p-sublayer materials in terms of forming smooth and homogeneous films, thereby leading to improved performance of p–i–n OPVs. Overall, this work demonstrates the effectiveness of the windmill-type architecture in preparing high-quality semiconducting thin films through the photoprecursor approach.
机译:高性能有机半导体器件的制备需要对有源层结构的精确控制。为此,我们正在努力通过光前体方法来控制小分子半导体的沉积,其中将可溶性前体化合物加工成薄膜形式,然后通过光照射将其转化为目标半导体。这种方法可以应用于逐层溶液沉积,从而可以通过湿法制备p–i–n型光伏活性层。但是,尚未建立分子设计原理以通过这种非常规方法获得所需的薄膜形态。本文中,我们评估了一种带有风叶状叶片的新型风车状分子1,3,5-三(5-(蒽-2-基)噻吩-2-基)苯,该分子旨在通过光前驱体方法沉积以使用作为p–i–n型有机光伏器件(OPV)中的p-子层。这种新化合物在形成光滑均匀的膜方面优于相应的先有p-sublayer材料,从而改善了p–i–n OPV的性能。总的来说,这项工作证明了风车式架构在通过光前体方法制备高质量半导体薄膜方面的有效性。

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