Author
Listed:
- Jie Chen
(East China Normal University)
- Hongfei Li
(East China Normal University)
- Hengchen Zhang
(East China Normal University)
- Xiaojuan Liao
(East China Normal University)
- Huijing Han
(East China Normal University)
- Lidong Zhang
(East China Normal University)
- Ruyi Sun
(East China Normal University)
- Meiran Xie
(East China Normal University)
Abstract
Ring-closure and ring-expansion techniques are the two routes for extensive synthesis of cyclic polymers. Here, we report an alternative blocking-cyclization technique referred to as the third route to prepare cyclic polymers with regulated ring size and ring number by ring-opening metathesis polymerization of di- and monofunctional monomers in a one-pot process, where the polymer intermediates bearing two single-stranded blocks are efficiently cyclized by the cyclizing unit of propagated ladderphane to generate corresponding mono-, bis-, and tricyclic polymers, and the well-defined ladderphane structure plays a crucial role in forming the cyclic topology. Monocyclic polymer is further modified via Alder-ene reaction and the cyclic molecular topology is clearly demonstrated. The diversity features of cyclic polymers are comprehensively revealed. This strategy has broken through the limitations of previous two cyclizing routes, and indeed opens a facile and popular way to various cyclic polymers by commercial Grubbs catalyst and conventional metathesis polymerization.
Suggested Citation
Jie Chen & Hongfei Li & Hengchen Zhang & Xiaojuan Liao & Huijing Han & Lidong Zhang & Ruyi Sun & Meiran Xie, 2018.
"Blocking-cyclization technique for precise synthesis of cyclic polymers with regulated topology,"
Nature Communications, Nature, vol. 9(1), pages 1-9, December.
Handle:
RePEc:nat:natcom:v:9:y:2018:i:1:d:10.1038_s41467-018-07754-1
DOI: 10.1038/s41467-018-07754-1
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