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Affordable Composites and Plastics from Renewable Resources: Part I: Synthesis of Monomers and Polymers

机译:来自可再生资源的实惠的复合材料和塑料:第一部分:单体和聚合物的合成

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摘要

Recent advances in genetic engineering, composite science, and natural fiber development offer significant opportunities for new, improved materials from renewable resources that can biodegrade or be recycled, thus enhancing global sustainability. A wide range of high-performance, low-cost materials can be made using plant oils, natural fibers, and lignin. By selecting the fatty acid distribution function of plant oils via computer simulation and the molecular connectivity, we can control chemical functionalization and molecular architecture to produce linear, branched, or cross-linked polymers. These materials can be used as pressure-sensitive adhesives, elastomers, rubbers, and composite resins. This chapter describes the chemical pathways that were used to modify plant oils and allow them to react with each other and various co-monomers to form materials with useful properties.
机译:基因工程,综合科学和天然纤维开发的最新进展为新的可再生资源提供了重新改进的材料,可以获得可生物降解或再循环的重要机会,从而提高全球可持续性。可以使用植物油,天然纤维和木质素进行各种高性能,低成本的材料。通过通过计算机模拟选择植物油的脂肪酸分布函数和分子连通性,可以控制化学官能化和分子架构以产生线性,支链或交联聚合物。这些材料可用作压敏粘合剂,弹性体,橡胶和复合树脂。本章描述了用于修饰植物油的化学途径,并允许它们彼此反应和各种共聚单体以形成具有有用特性的材料。

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