Latest advances in ionic liquids promoted synthesis and application of advanced biomass materials

IF 4.3 3区 工程技术 Q2 ENGINEERING, CHEMICAL
Ting He, Jipeng Yan, Wenzhe Xiao, Jian Sun
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引用次数: 0

Abstract

The utilization of sustainable resources provides a path to relieving the problem of dependence on fossil resources. In this context, biomass materials have become a feasible substitute for petroleum-based materials. The development of biomass materials is booming and advanced biomass materials with various functional properties are used in many fields including medicine, electrochemistry, and environmental science. In recent years, ionic liquids have been widely used in biomass pretreatments and processing owing to their “green” characteristics and adjustable physicochemical properties. Thus, the effects of ionic liquids in biomass materials generation require further study. This review summarizes the multiple roles of ionic liquids in promoting the synthesis and application of advanced biomass materials as solvents, structural components, and modifiers. Finally, a prospective approach is proposed for producing additional higher-quality possibilities between ionic liquids and advanced biomass materials.

Abstract Image

离子液体的最新进展促进了先进生物质材料的合成和应用
可持续资源的利用为减轻对化石资源的依赖提供了一条途径。在此背景下,生物质材料已成为石油基材料的可行替代品。生物质材料的发展日新月异,具有多种功能特性的先进生物质材料在医学、电化学、环境科学等领域得到了广泛的应用。近年来,离子液体因其“绿色”特性和可调节的理化性质在生物质预处理和加工中得到了广泛的应用。因此,离子液体在生物质材料生成中的作用有待进一步研究。本文综述了离子液体作为溶剂、结构组分和改性剂在促进先进生物质材料合成和应用中的多种作用。最后,提出了一种在离子液体和先进生物质材料之间产生更高质量可能性的前瞻性方法。
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来源期刊
CiteScore
7.60
自引率
6.70%
发文量
868
审稿时长
1 months
期刊介绍: Frontiers of Chemical Science and Engineering presents the latest developments in chemical science and engineering, emphasizing emerging and multidisciplinary fields and international trends in research and development. The journal promotes communication and exchange between scientists all over the world. The contents include original reviews, research papers and short communications. Coverage includes catalysis and reaction engineering, clean energy, functional material, nanotechnology and nanoscience, biomaterials and biotechnology, particle technology and multiphase processing, separation science and technology, sustainable technologies and green processing.
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