4.8 Article

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

期刊

NATIONAL SCIENCE REVIEW
卷 9, 期 5, 页码 -

出版社

OXFORD UNIV PRESS
DOI: 10.1093/nsr/nwab155

关键词

open-cage solution; supramolecular cage effect; supramolecular catalysis; cage-confined catalysis; cage-confined nanospaces in solution

资金

  1. National Natural Science Foundation of China [21821003, 21890380, 21720102007, 21701200]
  2. Local Innovative and Research Teams Project of Guangdong Pearl River Talents Program [2017BT01C161]
  3. FundamentalResearch Funds for the Central Universities
  4. Sino-French Cai Yuanpei Programme

向作者/读者索取更多资源

Amphoteric and heterogeneous solution nanospaces are created based on permeable open cages, allowing for unconventional chemical reactions and molecular processes.
Amphoteric and heterogeneous solution nanospaces are created on the basis of permeable open cages with supramolecular cage effect for multirole cage-confined catalysis beyond enzyme mimicking. 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)(6)(RuL3)(8)](28+) nanocages drive imidazole-proton equilibrium to display a significantly perturbed pK(a) 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.

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