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Photoresponsive Dissipative Macrocycles Using Visible-Light-Switchable Azobenzenes.


ABSTRACT: Visible light can be used to shift dynamic covalent imine assemblies out of equilibrium. We studied a fluorinated azobenzene building block that reliably undergoes geometric isomerism upon irradiation. The building block was used in combination with two different amines, ethylenediamine and R,R-1,2-diaminocyclohexane, to create a library of imine macrocycles. Whereas the simple amine can be used to access a polymeric state and a defined bowl-shaped macrocycle, the chiral amine gives access to a rich network of macrocycles that undergo both isomerisation as well as interconversion between different macrocyclic species, thereby allowing for control over the number of monomers involved in the cyclo-oligomerization; 1 H- and 19 F-DOSY NMR, MALDI-MS measurements, and UV/Vis spectroscopy were used to study the processes.

SUBMITTER: Nieland E 

PROVIDER: S-EPMC9828355 | biostudies-literature | 2022 Nov

REPOSITORIES: biostudies-literature

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Photoresponsive Dissipative Macrocycles Using Visible-Light-Switchable Azobenzenes.

Nieland Esther E   Voss Jona J   Mix Andreas A   Schmidt Bernd M BM  

Angewandte Chemie (International ed. in English) 20221026 48


Visible light can be used to shift dynamic covalent imine assemblies out of equilibrium. We studied a fluorinated azobenzene building block that reliably undergoes geometric isomerism upon irradiation. The building block was used in combination with two different amines, ethylenediamine and R,R-1,2-diaminocyclohexane, to create a library of imine macrocycles. Whereas the simple amine can be used to access a polymeric state and a defined bowl-shaped macrocycle, the chiral amine gives access to a  ...[more]

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