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Hyperbranched glyco-conjugated polymer

Figure 7.5 Synthesis of hyperbranched glyco-conjugated polymer (Poly6a and Poly6b) by ringopening multibranching polymerization of 1,4-anhydroerythiitol (6a) and 1,4-anhydro-L-threitol (6b) using trifluoromethanesulfonic acid (CF3SO3H) or fluorosulfonic acid (FSO3H). Figure 7.5 Synthesis of hyperbranched glyco-conjugated polymer (Poly6a and Poly6b) by ringopening multibranching polymerization of 1,4-anhydroerythiitol (6a) and 1,4-anhydro-L-threitol (6b) using trifluoromethanesulfonic acid (CF3SO3H) or fluorosulfonic acid (FSO3H).
Although the anionic polymerization of 13 tended to form gels, the cationic polymerization proceeded through a proton-transfer reaction mechanism to produce hyperbranched glyco-conjugated polymer Poly 13 mainly consisting of 2,5-anhydro-D-glucitol units. This was the first report of the synthesis of a hyperbranched polymer via a cyclopolymerization mechanism. [Pg.207]

Unimolecular Reversed Micelle Based on Hyperbranched Glyco-Conjugated Polymer Core... [Pg.211]


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Glyco

Hyperbranched

Hyperbranched Conjugated Polymers

Hyperbranched polymers

Hyperbranching

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