Self-Accelerating Click Reaction for Cyclic Polymer

As the most straightforward synthetic strategy for cyclic polymers in theory, the traditional homodifunctional bimolecular ring-closure methods showed limited success for preparing pure cyclic polymers in practice even after several decades of development. A breakthrough was achieved in this paper t...

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Veröffentlicht in:Macromolecules 2017-02, Vol.50 (4), p.1463-1472
Hauptverfasser: Sun, Peng, Chen, Jiqiang, Liu, Jian’an, Zhang, Ke
Format: Artikel
Sprache:eng
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Zusammenfassung:As the most straightforward synthetic strategy for cyclic polymers in theory, the traditional homodifunctional bimolecular ring-closure methods showed limited success for preparing pure cyclic polymers in practice even after several decades of development. A breakthrough was achieved in this paper to develop a successful homodifunctional bimolecular ring-closure method using a self-accelerating double strain-promoted azide–alkyne click reaction as the intermolecular and subsequent intramolecular coupling reactions. Because of the self-accelerating property of coupling reaction, this novel approach eliminated the usage of equimolar quantities between telechelic polymers and small molecule linkers, which was the prerequisite of traditional homodifunctional bimolecular ring-closure methods for pure cyclic polymers. More importantly, this approach could use an excess amount of small linkers to increase the intermolecular coupling reaction rate, further resulting in a significantly enhanced preparation efficiency of cyclic polymers.
ISSN:0024-9297
1520-5835
DOI:10.1021/acs.macromol.6b02614