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手性 BINOL 基共价有机框架用于对映选择性传感。

Chiral BINOL-Based Covalent Organic Frameworks for Enantioselective Sensing.

机构信息

School of Chemistry and Chemical Engineering and State Key Laboratory of Metal Matrix Composites , Shanghai Jiao Tong University , Shanghai 200240 , China.

Department of Chemical and Biomolecular Engineering , National University of Singapore , 4 Engineering Drive 4 , 117576 , Singapore.

出版信息

J Am Chem Soc. 2019 May 1;141(17):7081-7089. doi: 10.1021/jacs.9b02153. Epub 2019 Apr 19.

Abstract

Covalent organic frameworks (COFs) have emerged as a novel platform for material design and functional explorations, but it remains a challenge to synthetically functionalize targeted structures for task-specific applications. Optically pure 1,1'-bi-2-naphthol (BINOL) is one of the most important sources of chirality for organic synthesis and materials science, but it has not yet been used in construction of COFs for enantioselective processes. Here, by elaborately designing and choosing an enantiopure BINOL-based linear dialdehyde and a tris(4-aminophenyl)benzene derivative or tetrakis(4-aminophenyl)ethene as building blocks, two imine-linked chiral fluorescent COFs with a 2D layered hexagonal or tetragonal structure are prepared. The COF containing flexible tetraphenylethylene units can be readily exfoliated into ultrathin 2D nanosheets and electrospun to make free-standing nanofiber membrane. In both the solution and membrane systems, the fluorescence of COF nanosheets can be effectively quenched by chiral odor vapors via supramolecular interactions with the immobilized BINOL moieties, leading to remarkable chiral vapor sensors. Compared to the BINOL-based homogeneous and membrane systems, the COF nanosheets exhibited greatly enhanced sensitivity and enantioselectivity owing to the confinement effect and the conformational rigidity of the sensing BINOL groups in the framework. The ability to place such a useful BINOL chiral auxiliary inside open channels of COFs capable of amplifying chiral discrimination of the analytes represents a major step toward the rational synthesis of porous molecular materials for more chirality applications.

摘要

共价有机框架(COFs)作为材料设计和功能探索的新平台已经出现,但仍面临着为特定任务的应用合成功能化目标结构的挑战。光学纯 1,1'-联-2-萘酚(BINOL)是有机合成和材料科学中最重要的手性源之一,但它尚未用于构建 COFs 以用于对映选择性过程。在这里,通过精心设计和选择手性纯 BINOL 衍生的线性二醛和三(4-氨基苯基)苯衍生物或四(4-氨基苯基)乙烯作为构建块,制备了两种亚胺键合的手性荧光 COF,具有 2D 层状六方或四方结构。含有柔性四苯乙烯单元的 COF 可轻易剥离成超薄的 2D 纳米片,并通过静电纺丝制成独立式纳米纤维膜。在溶液和膜系统中,COF 纳米片的荧光可通过与固定的 BINOL 部分的超分子相互作用,有效地被手性气味蒸气猝灭,从而产生显著的手性蒸气传感器。与基于 BINOL 的均相和膜系统相比,由于在框架中固定的 BINOL 基团的受限效应和构象刚性,COF 纳米片表现出大大增强的灵敏度和对映选择性。将这种有用的 BINOL 手性辅助物放置在能够放大分析物手性区分的 COFs 的开放通道内的能力代表了朝着合理合成用于更多手性应用的多孔分子材料迈出的重要一步。

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