School of Chemical Sciences, Dublin City University, Collins Avenue, Dublin 9, Ireland.
Chem Soc Rev. 2015 Nov 21;44(22):8200-37. doi: 10.1039/c5cs00444f. Epub 2015 Aug 4.
The importance of biodegradation data as part of the design of safer chemicals is presented using ionic liquids (ILs) as a model study. Structural features that promote/impede IL biodegradation, IL design strategies, methods of biodegradation analysis, properties of IL/surfactant derivatives and computational methods of predicting biodegradation are discussed. The importance of metabolite studies as part of biodegradation assays is highlighted. The relevance of applying the lessons learned developing biodegradable ILs to other chemical classes is proposed. A comprehensive appendix of IL biodegradation data published since 2010 (∼300 ILs) has been compiled.
本文以离子液体(ILs)为例,介绍了生物降解数据作为更安全化学品设计的一部分的重要性。讨论了促进/阻碍 IL 生物降解的结构特征、IL 设计策略、生物降解分析方法、IL/表面活性剂衍生物的性质以及预测生物降解的计算方法。强调了代谢物研究作为生物降解分析的一部分的重要性。提出了将从可生物降解 IL 开发中学到的经验应用于其他化学类别的相关性。本文还编译了自 2010 年以来(约 300 个 ILs)发表的 IL 生物降解数据的综合附录。