了解催化木质素胺化化的艰难历程

IF 5.5 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Yihong Cai , Hao Huang , Zixuan Tan , Bo Yang , Guangping Zhou , Zhuoxi Li , Shaoqu Xie
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引用次数: 0

摘要

木质素是生物质转化的关键成分,在含氮化合物的合成中具有重要的潜力。然而,对真正木质素胺化的研究仍然有限,主要是由于其结构与模型化合物相比复杂。本文综述了影响木质素增值的因素,从木质素的提取到含氮产物的合成。有机溶剂萃取木质素具有分子结构完整、官能团丰富、不含硫等特点,由于催化剂靶向性增强,更容易降解和胺化。在所分析的各种催化剂中,钌基体系表现出优异的性能,在清洁、环保的溶剂中实现了高收率。综述了木质素胺化反应中催化剂的不同作用,为木质素胺化反应机理和催化剂性能的研究提供了新的思路。此外,还讨论了溶剂的影响及其对有效胺化的关键因素,以及催化剂载体、氢和胺源以及非催化热反应等次要因素。比较了各种木质素胺化条件的优点和局限性,突出了存在的挑战。最后,本文概述了木质素胺化系统的未来发展方向,为扩大木质素增值的前沿提供了创新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Understanding the hard journey of catalytic lignin amination valorization

Understanding the hard journey of catalytic lignin amination valorization
Lignin, a pivotal component in biomass conversion, holds significant potential for the synthesis of nitrogen-containing compounds. However, studies on the amination of real lignin remain limited, primarily due to its complex structure compared to model compounds. This review explores the factors influencing lignin valorization, from its extraction to the synthesis of nitrogenous products. Organic solvent-extracted lignin, characterized by its intact molecular structure, abundance of functional groups, and absence of sulfur, facilitates easier degradation and amination due to enhanced catalyst targeting. Among various catalysts analyzed, ruthenium-based systems demonstrated superior performance, achieving high yields in clean, environmentally friendly solvents. The review delves into the distinct roles of catalysts in lignin amination reactions, providing insights into reaction mechanisms and catalyst performance. Additionally, the influence of solvents and their critical factors for effective amination are discussed, alongside minor contributors such as catalyst carriers, hydrogen and amine sources, and non-catalytic thermal reactions. The advantages and limitations of various conditions for lignin amination are critically compared, highlighting existing challenges. Finally, this review outlines future directions for advancing lignin amination systems, offering innovative perspectives for expanding the frontiers of lignin valorization.
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来源期刊
Sustainable Chemistry and Pharmacy
Sustainable Chemistry and Pharmacy Environmental Science-Pollution
CiteScore
8.20
自引率
6.70%
发文量
274
审稿时长
37 days
期刊介绍: Sustainable Chemistry and Pharmacy publishes research that is related to chemistry, pharmacy and sustainability science in a forward oriented manner. It provides a unique forum for the publication of innovative research on the intersection and overlap of chemistry and pharmacy on the one hand and sustainability on the other hand. This includes contributions related to increasing sustainability of chemistry and pharmaceutical science and industries itself as well as their products in relation to the contribution of these to sustainability itself. As an interdisciplinary and transdisciplinary journal it addresses all sustainability related issues along the life cycle of chemical and pharmaceutical products form resource related topics until the end of life of products. This includes not only natural science based approaches and issues but also from humanities, social science and economics as far as they are dealing with sustainability related to chemistry and pharmacy. Sustainable Chemistry and Pharmacy aims at bridging between disciplines as well as developing and developed countries.
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