Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/43061
Title: Synthesis of nucleobase functionalised block copolymers towards precision self-assembly
Authors: Abeysekera, Iyomali
MAES, Lowie 
JUNKERS, Tanja 
Issue Date: 2024
Publisher: ROYAL SOC CHEMISTRY
Source: Polymer Chemistry, 15 (21) , p. 2129 -2139
Abstract: The formation of nanoaggregates from continuous flow assembly of nucleobase-functionalized amphiphilic block co-polymers is investigated. Block copolymers (BCPs) made from nucleobase-conjugated acrylate monomers and PEG acrylate were synthesized via reversible addition fragmentation chain transfer polymerization (RAFT) and tested. Polymers containing adenine, thymine, cytosine and uracil were obtained. Close inspection of the block extensions revealed potential issues in the livingness of the polymers, which may, however, only be an artifact from the high aggregation of polymers even in size exclusion chromatography. Using different synthesis methods (varying the order of polymer blocks and using in situ one-pot recipes) leads to very similar nanoaggregates with highly consistent results. Nanoaggregates were formed using a highly reproducible flow mixing setup, which enables not only fast but also scalable nanoparticle formation. By using complementary and non-complementary nucleobase BCPs, nanoparticles of very different sizes can be obtained in aqueous solution, ranging from about 35 to 230 nm, whose size distribution can be related to diffusion coefficients obtained for the polymers and their blends in a homogeneous solution via diffusion ordered spectroscopy. Further tunability of the system was shown by changing the average degree of polymerization of the nucleobase block from 25 to 60, demonstrating a transition from small spherical particles to elongated worm-like morphologies. Overall, this study gives guidelines for the targeted synthesis of nucleobase-containing nanoparticles with high tunability and under well reproducible synthesis conditions. The formation of nanoaggregates from continuous flow assembly of nucleobase functionalized amphiphilic block co-polymers is investigated.
Notes: Junkers, T (corresponding author), Monash Univ, Sch Chem, Polymer React Design Grp, 19 Rainforest Walk,Bldg 23, Clayton, Vic 3800, Australia.
tanja.junkers@monash.edu
Document URI: http://hdl.handle.net/1942/43061
ISSN: 1759-9954
e-ISSN: 1759-9962
DOI: 10.1039/d4py00060a
ISI #: 001215005300001
Rights: The Royal Society of Chemistry 2024
Category: A1
Type: Journal Contribution
Appears in Collections:Research publications

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