苝
二亚胺
双极扩散
材料科学
光电子学
有机半导体
堆积
平面的
分子
化学
物理
计算机科学
核磁共振
等离子体
计算机图形学(图像)
量子力学
有机化学
作者
Li Zhang,Inho Song,Jaeyong Ahn,Myeonggeun Han,Mathieu Linares,Mathieu Surin,Hui‐Jun Zhang,Joon Hak Oh,Jianbin Lin
标识
DOI:10.1038/s41467-020-20390-y
摘要
Despite great challenges, the development of new molecular structures with multiple and even conflicting characteristics are eagerly pursued for exploring advanced applications. To develop high-performance chiral organic semiconducting molecules, a distorted π-system is required for strong coupling with circularly polarized light (CPL), whereas planar π-stacking systems are necessary for high charge-carrier mobility. To address this dilemma, in this work, we introduce a skeleton merging approach through distortion of a perylene diimide (PDI) core with four fused heteroaromatics to form an ortho-π-extended PDI double-[7]heterohelicene. PDI double helicene inherits a high dissymmetry factor from the helicene skeleton, and the extended π-planar system concurrently maintains a high level of charge transport properties. In addition, ortho-π-extension of the PDI skeleton brings about near-infrared (NIR) light absorption and ambipolar charge transport abilities, endowing the corresponding organic phototransistors with high photoresponsivity of 450 and 120 mA W-1 in p- and n-type modes respectively, along with a high external quantum efficiency (89%) under NIR light irradiations. Remarkably, these multiple characteristics enable high-performance broadband CPL detections up to NIR spectral region with chiral organic semiconductors.
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