Supramolecular Nanostructures of Chiral Perylene Diimides with Amplified Chirality for High-Performance Chiroptical Sensing

超分子化学 超分子手性 手性(物理) 材料科学 纳米结构 对映体 自组装 有机半导体 超分子组装 纳米技术 二亚胺 光电导性 纳米材料 分子 结晶学 晶体结构 化学 光电子学 立体化学 有机化学 物理 量子力学 手征对称破缺 Nambu–Jona Lasinio模型 夸克
作者
Xiaobo Shang,Inho Song,Hiroyoshi Ohtsu,Yoon Ho Lee,Tianming Zhao,Tatsuhiro Kojima,Ji Hyung Jung,Masaki Kawano,Joon Hak Oh
出处
期刊:Advanced Materials [Wiley]
卷期号:29 (21): 1605828-1605828 被引量:113
标识
DOI:10.1002/adma.201605828
摘要

Chiral supramolecular nanostructures with optoelectronic functions are expected to play a central role in many scientific and technological fields but their practical use remains in its infancy. Here, this paper reports photoconductive chiral organic semiconductors (OSCs) based on perylene diimides with the highest electron mobility among the chiral OSCs and investigates the structure and optoelectronic properties of their homochiral and heterochiral supramolecular assemblies from bottom-up self-assembly. Owing to the well-ordered supramolecular packing, the homochiral nanomaterials exhibit superior charge transport with significantly higher photoresponsivity and dissymmetry factor compared with those of their thin film and monomeric equivalents, which enables highly selective detection of circularly polarized light, for the first time, in visible spectral range. Interestingly, the heterochiral nanostructures assembled from co-self-assembly of racemic mixtures show extraordinary chiral self-discrimination phenomenon, where opposite enantiomeric molecules are packed alternately into heterochiral architectures, leading to completely different optoelectrical performances. In addition, the crystal structures of homochiral and heterochiral nanostructures have first been studied by ab initio X-ray powder diffraction analysis. These findings give insights into the structure-chiroptical property relationships of chiral supramolecular self-assemblies and demonstrate the feasibility of supramolecular chirality for high-performance chiroptical sensing.
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