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Transformation Network Culminating in a Heteroleptic Cd6L6L'2 Twisted Trigonal Prism.


ABSTRACT: Transformations between three-dimensional metallosupramolecular assemblies can enable switching between the different functions of these structures. Here we report a network of such transformations, based upon a subcomponent displacement strategy. The flow through this network is directed by the relative reactivities of different amines, aldehydes, and di(2-pyridyl)ketone. The network provides access to an unprecedented heteroleptic Cd6L6L'2 twisted trigonal prism. The principles underpinning this network thus allow for the design of diverse structural transformations, converting one helicate into another, a helicate into a tetrahedron, a tetrahedron into a different tetrahedron, and a tetrahedron into the new trigonal prismatic structure type. The selective conversion from one host to another also enabled the uptake of a desired guest from a mixture of guests.

SUBMITTER: Zhang D 

PROVIDER: S-EPMC7243256 | biostudies-literature | 2020 May

REPOSITORIES: biostudies-literature

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Transformation Network Culminating in a Heteroleptic Cd<sub>6</sub>L<sub>6</sub>L'<sub>2</sub> Twisted Trigonal Prism.

Zhang Dawei D   Ronson Tanya K TK   Xu Lin L   Nitschke Jonathan R JR  

Journal of the American Chemical Society 20200506 20


Transformations between three-dimensional metallosupramolecular assemblies can enable switching between the different functions of these structures. Here we report a network of such transformations, based upon a subcomponent displacement strategy. The flow through this network is directed by the relative reactivities of different amines, aldehydes, and di(2-pyridyl)ketone. The network provides access to an unprecedented heteroleptic Cd<sub>6</sub><b>L</b><sub>6</sub><b>L'</b><sub>2</sub> twisted  ...[more]

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