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Guest Encapsulation Alters the Thermodynamic Landscape of a Coordination Host.


ABSTRACT: The architecture of self-assembled host molecules can profoundly affect the properties of the encapsulated guests. For example, a rigid cage with small windows can efficiently protect its contents from the environment; in contrast, tube-shaped, flexible hosts with large openings and an easily accessible cavity are ideally suited for catalysis. Here, we report a "Janus" nature of a Pd6L4 coordination host previously reported to exist exclusively as a tube isomer (T). We show that upon encapsulating various tetrahedrally shaped guests, T can reconfigure into a cage-shaped host (C) in quantitative yield. Extracting the guest affords empty C, which is metastable and spontaneously relaxes to T, and the TC interconversion can be repeated for multiple cycles. Reversible toggling between two vastly different isomers paves the way toward controlling functional properties of coordination hosts "on demand".

SUBMITTER: Hema K 

PROVIDER: S-EPMC10655118 | biostudies-literature | 2023 Nov

REPOSITORIES: biostudies-literature

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Guest Encapsulation Alters the Thermodynamic Landscape of a Coordination Host.

Hema Kuntrapakam K   Grommet Angela B AB   Białek Michał J MJ   Wang Jinhua J   Schneider Laura L   Drechsler Christoph C   Yanshyna Oksana O   Diskin-Posner Yael Y   Clever Guido H GH   Klajn Rafal R  

Journal of the American Chemical Society 20231102


The architecture of self-assembled host molecules can profoundly affect the properties of the encapsulated guests. For example, a rigid cage with small windows can efficiently protect its contents from the environment; in contrast, tube-shaped, flexible hosts with large openings and an easily accessible cavity are ideally suited for catalysis. Here, we report a "Janus" nature of a Pd<sub>6</sub>L<sub>4</sub> coordination host previously reported to exist exclusively as a tube isomer (<b>T</b>).  ...[more]

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