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木质素-硅氧烷杂化功能聚合物的酶合成。

Enzymatic synthesis of lignin-siloxane hybrid functional polymers.

机构信息

Institute of Environmental Biotechnology, Graz University of Technology, Graz, Austria.

出版信息

Biotechnol J. 2012 Feb;7(2):284-92. doi: 10.1002/biot.201100106. Epub 2011 Aug 19.

Abstract

This study combines the properties of siloxanes and lignin polymers to produce hybrid functional polymers that can be used as adhesives, coating materials, and/or multifunctionalized thin-coating films. Lignin-silica hybrid copolymers were synthesized by using a sol-gel process. Laccases from Trametes hirsuta were used to oxidize lignosulphonates to enhance their reactivity towards siloxanes and then were incorporated into siloxane precursors undergoing a sol-gel process. In vitro copolymerization studies using pure lignin monomers with aminosilanes or ethoxytrimethylsilane and analysis by ²⁹Si NMR spectroscopy revealed hybrid products. Except for kraft lignin, an increase in lignin concentration positively affected the tensile strength in all samples. Similarly, the viscosity generally increased in all samples with increasing lignin concentration and also affected the curing time.

摘要

本研究结合硅氧烷和木质素聚合物的特性,制备了杂化功能聚合物,可作为胶粘剂、涂料材料和/或多功能化的薄涂层膜。采用溶胶-凝胶法合成了木质素-硅杂化共聚物。利用糙皮侧耳木聚糖酶将木质素磺酸盐氧化,提高其对硅氧烷的反应性,然后将其掺入正在进行溶胶-凝胶过程的硅氧烷前体中。使用纯木质素单体与氨基硅烷或乙氧基三甲基硅烷进行体外共聚研究,并通过 29Si NMR 光谱分析,揭示了杂化产物。除了硫酸盐木质素外,所有样品中木质素浓度的增加均对拉伸强度产生积极影响。同样,随着木质素浓度的增加,所有样品的粘度通常都会增加,并且还会影响固化时间。

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