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Synthesis of naturally-derived macromolecules through simplified electrochemically mediated ATRP.


ABSTRACT: The flavonoid-based macroinitiator was received for the first time by the transesterification reaction of quercetin with 2-bromoisobutyryl bromide. In accordance with the "grafting from" strategy, a naturally-occurring star-like polymer with a polar 3,3',4',5,6-pentahydroxyflavone core and hydrophobic poly(tert-butyl acrylate) (PtBA) side arms was synthesized via a simplified electrochemically mediated ATRP (seATRP), utilizing only 78 ppm by weight (wt) of a catalytic CuII complex. To demonstrate the possibility of temporal control, seATRP was carried out utilizing a multiple-step potential electrolysis. The rate of the polymerizations was well-controlled by applying optimal potential values during preparative electrolysis to prevent the possibility of intermolecular coupling of the growing polymer arms. This appears to be the first report using on-demand seATRP for the synthesis of QC-(PtBA-Br)5pseudo-star polymers. The naturally-derived macromolecules showed narrow MWDs (? = 1.08-1.11). 1H NMR spectral results confirm the formation of quercetin-based polymers. These new flavonoid-based polymer materials may find applications as antifouling coatings and drug delivery systems.

SUBMITTER: Chmielarz P 

PROVIDER: S-EPMC5704770 | biostudies-literature | 2017

REPOSITORIES: biostudies-literature

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Synthesis of naturally-derived macromolecules through simplified electrochemically mediated ATRP.

Chmielarz Paweł P   Pacześniak Tomasz T   Rydel-Ciszek Katarzyna K   Zaborniak Izabela I   Biedka Paulina P   Sobkowiak Andrzej A  

Beilstein journal of organic chemistry 20171120


The flavonoid-based macroinitiator was received for the first time by the transesterification reaction of quercetin with 2-bromoisobutyryl bromide. In accordance with the "grafting from" strategy, a naturally-occurring star-like polymer with a polar 3,3',4',5,6-pentahydroxyflavone core and hydrophobic poly(<i>tert</i>-butyl acrylate) (P<i>t</i>BA) side arms was synthesized via a simplified electrochemically mediated ATRP (<i>se</i>ATRP), utilizing only 78 ppm by weight (wt) of a catalytic Cu<sup  ...[more]

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