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来自非手性双(硼二吡咯亚甲基)的手性微针:自发镜像对称破缺产生一种有前景的光致发光有机材料。

Chiral Microneedles from an Achiral Bis(boron dipyrromethene): Spontaneous Mirror Symmetry Breaking Leading to a Promising Photoluminescent Organic Material.

作者信息

Gartzia-Rivero Leire, Ray Leiva César, Sánchez-Carnerero Esther M, Bañuelos Jorge, Moreno Florencio, Maroto Beatriz L, García-Moreno Inmaculada, Infantes Lourdes, Mendez Bianchi, López-Arbeloa Iñigo, de la Moya Santiago

机构信息

Departamento de Química Física , Universidad del País Vasco (UPV/EHU) , 644, 48080 Bilbao , Spain.

Department of Chemistry and RECETOX , Masaryk University , Kamenice 5 , 62500 Brno , Czech Republic.

出版信息

Langmuir. 2019 Apr 9;35(14):5021-5028. doi: 10.1021/acs.langmuir.9b00409. Epub 2019 Mar 28.

Abstract

Supramolecular self-assembly of a highly flexible and achiral meso bis(boron dipyrromethene) [bis(BODIPY)] dye straightforwardly yields fluorescent microfibers, exhibiting an intriguing anisotropic photonic behavior. This performance includes the generation of chiroptical activity owing to spontaneous mirror symmetry breaking (SMSB). Repetition of several self-assembly experiments demonstrates that the involved SMSB is not stochastic but quasi deterministic in the direction of the induced chiral asymmetry. The origin of these intriguing (chiro)photonic properties is revealed by fluorescent microspectroscopy studies of individual micrometric objects, combined with X-ray diffraction elucidation of microcrystals. Such a study demonstrates that J-like excitonic coupling between bis(BODIPY) units plays a fundamental role in their supramolecular organization, leading to axial chirality. Interestingly, the photonic behavior of the obtained fibers is ruled by inherent nonradiative pathways from the involved push-pull chromophores, and mainly by the complex excitonic interactions induced by their anisotropic supramolecular organization.

摘要

一种高度柔性且非手性的内消旋双(硼二吡咯亚甲基)[双(BODIPY)]染料的超分子自组装直接产生荧光微纤维,呈现出有趣的各向异性光子行为。这种性能包括由于自发镜像对称破缺(SMSB)而产生的手性光学活性。多次自组装实验的重复表明,所涉及的SMSB不是随机的,而是在诱导的手性不对称方向上是准确定性的。通过对单个微米级物体的荧光显微光谱研究,结合微晶的X射线衍射解析,揭示了这些有趣的(手性)光子特性的起源。这样的研究表明,双(BODIPY)单元之间的J型激子耦合在其超分子组织中起着基本作用,导致轴向手性。有趣的是,所得纤维的光子行为受所涉及的推拉发色团固有的非辐射途径支配,主要受其各向异性超分子组织诱导的复杂激子相互作用支配。

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