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手性混合环糊精金属有机骨架表现出圆偏振发光。

Helically Chiral Hybrid Cyclodextrin Metal-Organic Framework Exhibiting Circularly Polarized Luminescence.

机构信息

Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208-3113, United States.

Nanoscopy-UGR Laboratory, Departamento de Fisicoquimica, Facultad de Farmacia, Unidad de Excelencia de Química, University of Granada, Granada 18071, Spain.

出版信息

J Am Chem Soc. 2022 Jun 1;144(21):9380-9389. doi: 10.1021/jacs.2c01554. Epub 2022 May 20.

Abstract

Three achiral polycyclic aromatic fluorophores─namely, 1-pyrenecarboxylic acid, 9-anthracenecarboxylic acid, and perylene-3,9-dicarboxylic acid─were chosen based on their desired properties before being incorporated into the construction of a K-carrying gamma-cyclodextrin (γ-CD)-based metal-organic framework (CD-MOF-1) and γ-CD-containing hybrid frameworks (CD-HFs). Among these fluorophores, only the pyrene-carrying one shows significant noncovalent bonding interactions with γ-CD in solution. This fluorophore is encapsulated in a CD-HF with a trigonal superstructure instead of the common cubic CD-MOF-1 found in the case of the other two fluorophores. Single-crystal X-ray diffraction analysis of the trigonal CD-HF reveals a π-stacked chiral positioning of the pyrene-carrying fluorophore inside the (γ-CD) tunnels and held uniformly around an enantiomorphous 3 screw axis along the direction in the solid-state structure. This helix-like structure demonstrates an additional level of chirality over and above the point-chiral stereogenic centers of γ-CD and the axial chirality associated with the self-assembled π-stacked fluorophores. These arrangements result in specifically generated photophysical and chiroptical properties, such as the controlled emergence of circularly polarized luminescence (CPL) emission. In this manner, a complete understanding of the mechanism of chirality transfer from a chiral host (CD-HF) to an encapsulated achiral fluorophore has been achieved, an attribute which is often missing in the development of materials with CPL.

摘要

三种手性多环芳烃荧光团——1-蒽甲酸、9-蒽甲酸和苝-3,9-二羧酸——根据其预期特性被选择用于构建 K 载体 γ-环糊精(γ-CD)基金属有机骨架(CD-MOF-1)和含 γ-CD 的杂化骨架(CD-HF)。在这些荧光团中,只有携带芘的荧光团在溶液中与 γ-CD 表现出显著的非共价键相互作用。该荧光团被包封在具有三角超结构的 CD-HF 中,而不是在其他两种荧光团的情况下发现的常见立方 CD-MOF-1。三角 CD-HF 的单晶 X 射线衍射分析表明,携带芘的荧光团在(γ-CD)隧道内呈π堆积手性定位,并在固态结构中沿[111]方向均匀围绕等旋轴保持一致。这种螺旋状结构在 γ-CD 的手性中心和与自组装π堆积荧光团相关的轴向手性之外,提供了额外的手性层次。这些排列导致特定的光物理和手性光学性质的产生,例如圆偏振发光(CPL)发射的控制出现。通过这种方式,从手性主体(CD-HF)到封装的非手性荧光团的手性转移机制得到了完整的理解,这在手性材料的 CPL 开发中常常缺失。

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