首页> 外文期刊>Journal of Polymers and the Environment >Protein-Polymer Grafts via a Soy Protein Derived Macro-RAFTChain Transfer Agent
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Protein-Polymer Grafts via a Soy Protein Derived Macro-RAFTChain Transfer Agent

机译:通过大豆蛋白衍生的Macro-RAFTChain转移剂进行蛋白-聚合物接枝

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摘要

Methodology to produce materials derived from renewable resources is of great importance in decreasing both environmental impact as well as dependence on fossil fuels. We report a straightforward method of polymer grafting to soy protein hydrolysates, which are available in surplus. Benzylthiocarbonate moieties were installed on the protein surface via amidation of free amino groups, creating a protein macro chain transfer agent (CTA) for reversible addition fragmentation transfer (RAIT) polymerization. We found that subjection of this soy protein macro-CTA (SP-CTA) to RAFT polymerization conditions with polar acrylate monomers resulted in protein-polymer nanometer-scale particles with solubility properties dictated by monomer polarity. Polymer grafting, particle size and polymerization were characterized by elemental analysis, transmission electron microscopy and gel permeation chromatography. We anticipate that this method of grafting will be of use in generation of new materials based on renewable resources.
机译:生产源自可再生资源的材料的方法学在减少环境影响以及对化石燃料的依赖方面非常重要。我们报告了一种简单的聚合物接枝到大豆蛋白水解物的方法,该方法可以过量使用。通过游离氨基的酰胺化,将苄基硫代碳酸酯部分安装在蛋白质表面上,从而形成用于可逆加成片段转移(RAIT)聚合的蛋白质大链转移剂(CTA)。我们发现该大豆蛋白大分子CTA(SP-CTA)在极性丙烯酸酯单体的RAFT聚合条件下产生的蛋白质-聚合物纳米级颗粒具有由单体极性决定的溶解性。通过元素分析,透射电子显微镜和凝胶渗透色谱对聚合物的接枝,粒径和聚合进行了表征。我们预计这种接枝方法将用于基于可再生资源的新材料的生产中。

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