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Kim, Byeong-Su
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Architecture-Controlled Synthesis of Redox-Degradable Hyperbranched Polyglycerol Block Copolymers and the Structural Implications of their Degradation

Author(s)
Son, SuhyunPark, HaereeShin, EeseulShibasaki, YujiKim, Byeong-Su
Issued Date
2016-06
DOI
10.1002/pola.28031
URI
https://scholarworks.unist.ac.kr/handle/201301/20410
Fulltext
http://onlinelibrary.wiley.com/doi/10.1002/pola.28031/abstract
Citation
JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY, v.54, no.12, pp.1752 - 1761
Abstract
We have successfully synthesized a series of redox-degradable hyperbranched polyglycerols using a disulfide containing monomer, 2-((2-(oxiran-2-ylmethoxy)ethyl)disulfanyl)ethan-1-ol (SSG), to yield PSSG homopolymers and hyperbranched block copolymers, P(G-b-SSG) and P(SSG-b-G), containing nondegradable glycerol (G) monomers. Using these polymers, we have explored the structures of the hyperbranched block copolymers and their related degradation products. Furthermore, side reaction such as reduction of disulfide bond during the polymerization was investigated by employing the free thiol titration experiments. We elucidated the structures of the degradation products with respect to the architecture of the hyperbranched block copolymer under redox conditions using H-1 NMR and GPC measurements. For example, the degradation products of P(G-b-SSG) and P(SSG-b-G) are clearly different, demonstrating the clear distinction between linear and hyperbranched block copolymers. We anticipate that this study will extend the structural diversity of PG based polymers and aid the understanding of the structures of degradable hyperbranched PG systems.
Publisher
WILEY-BLACKWELL
ISSN
0887-624X
Keyword (Author)
block copolymershyperbranchedsynthesispolyglycerolredox-degradable
Keyword
LINKED STAR POLYMERSDRUG-DELIVERYMULTIFUNCTIONAL POLYETHERPOLY(ETHYLENE OXIDE)MICELLESBIOCOMPATIBILITYDISULFIDESULFUR

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