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Design, Synthesis and Self-Assembly of Functional Amphiphilic Metallodendrimers.


ABSTRACT: A new family of alkynylated, amphiphilic dendrimers consisting of amidoamine linkers connected to 5,5'-functionalized 2,2'-bipyridine cores has been developed and evaluated in the formation of metallodendrimers of different generations and in self-assembly protocols. A convergent synthetic strategy was applied to provide dumbbell-shaped amphiphilic dendrimers, where the 2,2'-bipyridine cores could be coordinated to FeII centers to afford corresponding metallodendrimers. The ability of the metallic- and non-metallic dendritic structures to self-assemble into functional supramolecular aggregates were furthermore evaluated in aqueous solution. Spherical aggregates with sizes of a few hundred nanometers were generally produced, where controlled disassembly of the metallodendrimers through decomplexation could be achieved.

SUBMITTER: Neranon K 

PROVIDER: S-EPMC6948116 | biostudies-literature | 2020 Jan

REPOSITORIES: biostudies-literature

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Design, Synthesis and Self-Assembly of Functional Amphiphilic Metallodendrimers.

Neranon Kitjanit K   Alberch Laura L   Ramström Olof O  

ChemistryOpen 20200108 1


A new family of alkynylated, amphiphilic dendrimers consisting of amidoamine linkers connected to 5,5'-functionalized 2,2'-bipyridine cores has been developed and evaluated in the formation of metallodendrimers of different generations and in self-assembly protocols. A convergent synthetic strategy was applied to provide dumbbell-shaped amphiphilic dendrimers, where the 2,2'-bipyridine cores could be coordinated to Fe<sup>II</sup> centers to afford corresponding metallodendrimers. The ability of  ...[more]

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