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含碱性笼限纳米空间的酸性开孔溶液用于多用途催化。

Acidic open-cage solution containing basic cage-confined nanospaces for multipurpose catalysis.

作者信息

Li Kang, Wu Kai, Fan Yan-Zhong, Guo Jing, Lu Yu-Lin, Wang Yuan-Fan, Maurin Guillaume, Su Cheng-Yong

机构信息

MOE Laboratory of Bioinorganic and Synthetic Chemistry, Lehn Institute of Functional Materials, School of Chemistry, Sun Yat-sen University, Guangzhou 510275, China.

Institut Charles Gerhardt Montpellier, Centre National de la Recherche Scientifique, École Nationale Supérieure de Chimie de Montpellier, Université de Montpellier, Montpellier 34095, France.

出版信息

Natl Sci Rev. 2021 Aug 20;9(5):nwab155. doi: 10.1093/nsr/nwab155. eCollection 2022 May.

Abstract

The nanoscale chemical spaces inherent in porous organic/coordination cages or solid/liquid materials have been continuously explored for their nanoconfinement effect on selective adsorption and reaction of small gas or organic molecules. Herein, we aim to rationalize the unconventional chemical reactivities motivated by the cage-confined nanospaces in aqueous solutions, where the robust yet permeable nanospaces defined by the open cages facilitate dynamic guest exchange and unusual chemical reactions. The high positive charges on [(Pd/Pt)(RuL)] nanocages drive imidazole-proton equilibrium to display a significantly perturbed p shift, creating cage-defined nanospaces in solution with distinct intrinsic basicity and extrinsic acidity. The supramolecular cage effect plays pivotal roles in elaborating robust solution nanospaces, controlling ingress-and-egress molecular processes through open-cage portals and endowing nanocages with transition-state stabilization, amphoteric reactivities and the phase transfer of insoluble molecules, thus promoting chemical transformations in unconventional ways. Consequently, a wide range of application of cage-confined catalysis with anomalous reactivities may be expected based on this kind of open-cage solution medium, which combines cage nanocavity, solution heterogeneity and liquid-phase fluidity to benefit various potential mass transfer and molecular process options.

摘要

多孔有机/配位笼或固/液材料中固有的纳米级化学空间因其对小分子气体或有机分子的选择性吸附和反应的纳米限域效应而不断被探索。在此,我们旨在阐明由水溶液中笼限纳米空间引发的非常规化学反应性,其中开放笼所定义的坚固且可渗透的纳米空间促进了动态客体交换和异常化学反应。[(Pd/Pt)(RuL)]纳米笼上的高正电荷驱动咪唑 - 质子平衡,使其显示出显著扰动的p 位移,在溶液中形成具有独特内在碱性和外在酸性的笼定义纳米空间。超分子笼效应在构建坚固的溶液纳米空间、通过开放笼孔控制分子进出过程以及赋予纳米笼过渡态稳定性、两性反应性和不溶性分子的相转移方面起着关键作用,从而以非常规方式促进化学转化。因此,基于这种结合了笼纳米腔、溶液非均质性和液相流动性以利于各种潜在传质和分子过程选择的开放笼溶液介质,有望实现广泛的具有异常反应性的笼限催化应用。

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