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Morphological studies on Sn-O coordination driving self-assembly of well-defined organotin-containing block copolymers
Morphological studies on Sn-O coordination driving self-assembly of well-defined organotin-containing block copolymers
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Morphological studies on Sn-O coordination driving self-assembly of well-defined organotin-containing block copolymers
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Morphological studies on Sn-O coordination driving self-assembly of well-defined organotin-containing block copolymers
Morphological studies on Sn-O coordination driving self-assembly of well-defined organotin-containing block copolymers

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Morphological studies on Sn-O coordination driving self-assembly of well-defined organotin-containing block copolymers
Morphological studies on Sn-O coordination driving self-assembly of well-defined organotin-containing block copolymers
Journal Article

Morphological studies on Sn-O coordination driving self-assembly of well-defined organotin-containing block copolymers

2014
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Overview
A tin-oxygen coordination driving self-assembly was developed in the block copolymers containing organotin, which were prepared by the radical addition-fraction transfer (RAFT) method and characterized by the gel-permeation chromatography (GPC) and 1H-NMR. And the self-assemblies of these block copolymers with various chain length ratios in the different concentrations in CHCl3 were stable according to the results of DLS and TEM. Additionally, it was also given an insight investigation on the regulation of self-assembly of the block copolymers by adding dibutyltin dichloride and a possible mechanism was proposed.