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Recent Developments in Chemical Synthesis with Biocatalysts in Ionic Liquids

机译:离子液体中生物催化剂化学合成的最新进展

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摘要

Over the past decade, a variety of ionic liquids have emerged as greener solvents for use in the chemical manufacturing industries. Their unique properties have attracted the interest of chemists worldwide to employ them as replacement for conventional solvents in a diverse range of chemical transformations including biotransformations. Biocatalysts are often regarded as green catalysts compared to conventional chemical catalysts in organic synthesis owing to their properties of low toxicity, biodegradability, excellent selectivity and good catalytic performance under mild reaction conditions. Similarly, a selected number of specific ionic liquids can be considered as greener solvents superior to organic solvents owing to their negligible vapor pressure, low flammability, low toxicity and ability to dissolve a wide range of organic and biological substances, including proteins. A combination of biocatalysts and ionic liquids thus appears to be a logical and promising opportunity for industrial use as an alternative to conventional organic chemistry processes employing organic solvents. This article provides an overview of recent developments in this field with special emphasis on the application of more sustainable enzyme-catalyzed reactions and separation processes employing ionic liquids, driven by advances in fundamental knowledge, process optimization and industrial deployment.
机译:在过去的十年中,出现了多种离子液体,它们是用于化学制造行业的绿色溶剂。它们的独特性能吸引了全世界化学家的兴趣,他们将其用作包括生物转化在内的各种化学转化中的常规溶剂的替代品。与有机合成中的常规化学催化剂相比,生物催化剂由于其低毒性,可生物降解性,优异的选择性和在温和的反应条件下良好的催化性能,在有机合成中通常被视为绿色催化剂。类似地,由于其可忽略的蒸气压,低易燃性,低毒性以及溶解包括蛋白质在内的多种有机和生物物质的能力,因此可以将选定数量的特定离子液体视为优于有机溶剂的绿色溶剂。因此,生物催化剂和离子液体的组合对于作为使用有机溶剂的常规有机化学方法的替代品的工业用途而言似乎是合乎逻辑且有希望的机会。本文概述了该领域的最新发展,特别强调了在基础知识,工艺优化和工业应用方面的发展推动下,采用离子液体的更具可持续性的酶催化反应和分离工艺的应用。

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