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超支化聚磷酸酯的合成、改性、表征及应用进展

Progress in synthesis, modification, characterization and applications of hyperbranched polyphosphate polyesters.

作者信息

Hao Dongyan, Guo Xiaoxiao, Zhu Xing, Wei Chao, Gao Lanchang, Wang Xuechuan

机构信息

School of Chemical Engineering and Modern Materials, Shangluo University, Shangluo, Shaanxi, China.

BioHong Corporation of Xi'an, Product development department, Xi'an, Shaanxi, China.

出版信息

Des Monomers Polym. 2024 Jul 26;27(1):62-86. doi: 10.1080/15685551.2024.2376842. eCollection 2024.

Abstract

Hyperbranched polyphosphate polyesters (HPPs) as a special class of hyperbranched polymers have attracted increased interest and have been intensively studied, because of peculiar structures, excellent biocompatibility, flexibility in physicochemical properties, biodegradability, water soluble, thermal stability, and mechanical properties. HPPs can be divided into phosphates as monomers and phosphates as end groups. In this article, the classification, general synthesis, modifications, and applications of HPP are reviewed. In addition, recent developments in the application of HPP are described, such as modified or functionalized by end capping and hypergrafting to improve the performances in polymer blends, coatings, flame retardant, leather. Furthermore, the modifications and application of HPPs in biomedical materials, such as drug delivery and bone regeneration were discussed. In summary, the hyperbranched polymer enlarges its application range and improves its application performance compared with conventional polymer. In the future, more new HPPs composite materials will be developed through hyperbranched technique. This review of HPPs will provide useful theoretical basis and technical support for the development of new hyperbranched polymer material.

摘要

超支化聚磷酸酯(HPPs)作为一类特殊的超支化聚合物,因其独特的结构、优异的生物相容性、物理化学性质的灵活性、生物降解性、水溶性、热稳定性和机械性能而受到越来越多的关注并得到深入研究。HPPs可分为以磷酸盐为单体和以磷酸盐为端基两类。本文综述了HPP的分类、一般合成方法、改性及应用。此外,还介绍了HPP应用的最新进展,如通过封端和超支化接枝进行改性或功能化,以提高其在聚合物共混物、涂料、阻燃剂、皮革中的性能。此外,还讨论了HPPs在生物医学材料中的改性及应用,如药物递送和骨再生。总之,与传统聚合物相比,超支化聚合物扩大了其应用范围并提高了其应用性能。未来,将通过超支化技术开发更多新型HPPs复合材料。本文对HPPs的综述将为新型超支化聚合物材料的开发提供有用的理论依据和技术支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5ed/11285245/5f22eba54e2f/TDMP_A_2376842_F0001_B.jpg

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