GRAFT COPOLYMERIZATION OF CELLULOSE, CELLULOSE DERIVATIVES, AND LIGNOCELLULOSE

R. Samal, Prafulla K. Sahoo, Himansu S. Samantaray
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引用次数: 36

Abstract

Abstract The growth of polymer science has led to the development of new materials in direct competition with natural materials, many of which have been in use since earliest times. This has caused researchers to look more critically at both natural and synthetic macromolecules in order to learn more about their underlying structures and their relation to the properties exhibited by the macromolecules. In this regard, chemical modifications have been devised to impart certain desirable properties of both natural and synthetic macromolecules, and their applications have become an integral part of such chemical modifications. Various chemical modifications (e.g., change of functionality, oxidative degradation, inter- and intramolecular gelation, graft copolymerization), have been practiced to add improved properties to the base polymers. However, among all these methods, modification of polymers via graft copolymerization has been the subject of much interest and has made paramount contribution toward impro...
纤维素、纤维素衍生物和木质纤维素的接枝共聚物
高分子科学的发展导致了与天然材料直接竞争的新材料的发展,其中许多材料从最早的时候就开始使用了。这使得研究人员对天然大分子和合成大分子进行了更严格的研究,以便更多地了解它们的潜在结构以及它们与大分子所表现出的性质的关系。在这方面,化学修饰已被设计成赋予天然和合成大分子某些理想的特性,它们的应用已成为这种化学修饰的一个组成部分。各种化学修饰(例如,功能改变,氧化降解,分子间和分子内凝胶化,接枝共聚)已经被实践,以提高基础聚合物的性能。然而,在所有这些方法中,通过接枝共聚对聚合物进行改性一直是人们感兴趣的主题,并对提高聚合物的性能做出了重要贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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