IF 14 Q1 CHEMISTRY, MULTIDISCIPLINARY
Jignesh S. Mahajan, Eric R. Gottlieb, Jung Min Kim, Thomas H. Epps, III
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引用次数: 0

摘要

木质纤维素生物质是下一代可持续、高性能聚合物材料的理想原料。虽然木质素是一种可用性高、成本低的天然芳烃来源,但它通常被焚烧供热或作为废物处理。与现有的石化基化合物相比,使用木质素制造新材料既是挑战也是机遇。这些考虑因素来自木质素的两个基本方面:难降解/异构性质和芳香族甲氧基取代基。本报告重点介绍了 Epps 小组及其合作者在以下方面所做的四项重要工作:建立创新方法/工艺,利用木质素解构产物合成聚合物,以释放应用潜力,尤其关注生物基单体混合物的聚合、开发适用于不同原料的结构-性能-加工关系、甲氧基取代基的功能优势以及木质素解构的可扩展性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Toward Sustainable Materials: From Lignocellulosic Biomass to High-Performance Polymers

Toward Sustainable Materials: From Lignocellulosic Biomass to High-Performance Polymers
Lignocellulosic biomass is an ideal feedstock for the next generation of sustainable, high-performance, polymeric materials. Although lignin is a highly available and low-cost source of natural aromatics, it is commonly burned for heat or disposed of as waste. The use of lignin for new materials introduces both challenges and opportunities with respect to incumbent petrochemical-based compounds. These considerations are derived from two fundamental aspects of lignin: its recalcitrant/heterogeneous nature and aromatic methoxy substituents. This Account highlights four key efforts from the Epps group and collaborators that established innovative methods/processes to synthesize polymers from lignin deconstruction products to unlock application potential, with a particular focus on the polymerization of biobased monomer mixtures, development of structure–property–processing relationships for diverse feedstocks, functional benefits of methoxy substituents, and scalability of lignin deconstruction.
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CiteScore
17.70
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