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1.中国科学院成都有机化学研究所,成都 610041
2.中国科学院大学,北京 100049
3.西华大学理学院,成都 610039
4.不对称合成与手性技术四川省重点实验室,成都 610041
*邓瑾妮(1982-),女,研究员,主要从事含氟高分子及自清洁功能化材料研究。E-mail:dengjinniddd@163.com
纸质出版日期:2023-03-20,
收稿日期:2022-05-12,
修回日期:2022-06-20,
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向洋洋, 薛淏, 郑朝晖, 邓瑾妮. “梳形”含氟功能聚合物的构建与应用[J]. 高分子通报, 2023,36(3):298-309.
XIANG Yang-yang, XUE Hao, ZHENG Zhao-hui, DENG Jin-ni. Construction and Application of "Comb-shaped" Fluorine-containing Functional Polymers[J]. Polymer Bulletin, 2023,36(3):298-309.
向洋洋, 薛淏, 郑朝晖, 邓瑾妮. “梳形”含氟功能聚合物的构建与应用[J]. 高分子通报, 2023,36(3):298-309. DOI: 10.14028/j.cnki.1003-3726.2023.03.003.
XIANG Yang-yang, XUE Hao, ZHENG Zhao-hui, DENG Jin-ni. Construction and Application of "Comb-shaped" Fluorine-containing Functional Polymers[J]. Polymer Bulletin, 2023,36(3):298-309. DOI: 10.14028/j.cnki.1003-3726.2023.03.003.
含氟化合物因具耐热性、耐化学性和低表面能等优异性能
在设计具有特殊功能和特定化学物理性质的功能聚合物时展现出优秀的特性。然而目前大部分含氟聚合物仍是通过传统的自由基聚合获得
难以对聚合物的聚合过程进行调控
导致具有新型结构的含氟聚合物的构建较为困难。随着可控/活性自由基聚合方法的发展
如原子转移自由基聚合(atom transfer radical polymerization
ATRP)
可逆加成-断裂链转移聚合(reversible addition-fragmentation chain transfer polymerization
RAFT)和开环易位聚合(ring opening metathesis polymerization
ROMP)等
构建新型结构的含氟聚合物成为可能。通过对含氟聚合物的聚合过程和结构的精准控制
结合“grafting-from”、“grafting-to”和“grafting-through”三种接枝方法可得到“梳形”结构的含氟聚合物。由于含氟链段的高温自迁移性
将含氟链段作为“梳段”
使其具有独特的物理化学性质
在光电、生物医药等高端领域有着很大的性能优势和应用前景。本文主要对含氟聚合物的“梳形”结构的构建和其功能材料的应用进行综述
并展望了其未来的发展方向。
Due to their excellent properties such as heat resistance
chemical resistance and low surface energy
fluorine-containing compounds exhibit excellent properties when designing functional polymers with special functions and specific chemical and physical properties. However
at present
most fluoropolymers are still obtained by traditional free radical polymerization
and it is difficult to control the polymerization process of the polymer
which makes it difficult to construct fluoropolymers with new structures. With the development of controlled/living radical polymerization methods
such as atom transfer radical polymerization (ATRP)
reversible addition-fragmentation chain transfer polymerization (RAFT)
and ring opening metathesis polymerization (ROMP)
it is possible to construct fluoropolymers with novel structures. Through precise control of the polymerization process and structure of fluoropolymers
fluoropolymers with a "comb" structure can be obtained by combining the three grafting methods of "grafting-from"
"grafting-to" and "grafting-through" . Due to the high temperature self-migration of the fluorine-containing segment
the fluorine-containing segment is used as a "comb segment"
which makes it have unique physical and chemical properties
and has great performance advantages and application prospects in high-end fields such as optoelectronics and biomedicine. In this paper
the construction of the "comb" structure of fluoropolymers and the application of its functional materials are reviewed
and its future development direction is prospected.
含氟聚合物梳形接枝方法
FluoropolymerComb-shapedGrafting methods
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