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首页> 外文期刊>Chemosphere >Synthesis, characterization, ecotoxicity and biodegradability evaluations of novel biocompatible surface active lauroyl sarcosinate ionic liquids
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Synthesis, characterization, ecotoxicity and biodegradability evaluations of novel biocompatible surface active lauroyl sarcosinate ionic liquids

机译:新型生物相容性表面活性月桂酰脱氨酸离子液体的合成,表征,生态毒性和生物降解性评价

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Ionic liquids (ILs) based surfactants have been emerged as attractive alternatives to the conventional surfactants owing to their tailor-made and eco-friendly properties. Therefore, present study described the synthesis of nine new fatty amino acids based IL surfactants utilizing lauroyl sarcosinate anion and pyrrolidinium, imidazolium, pyridinium, piperidinium, morpholinium and cholinium cations for the first time. The synthesized surface active lauroyl sarcosinate ionic liquids (SALSILs) were characterized by H-1 NMR, C-13 NMR and TGA. Next, the surface tension and critical micellar concentrations were determined and compared with the surface properties of ILs based surfactants. Further, the toxicity and biodegradability of the synthesized SALSIlLs were evaluated to confirm their safe and efficient process applications. The studies revealed that three out of nine synthesized SALSILs containing pyridinium cation have showed strong activity towards the tested microbial growth. The remaining six SALSILs met the biocompatible measures demonstrating moderate to low activity depends on the tested microbes. The alicyclic SALSILs containing morpholinium and piperidinium cations have demonstrated 100% biodegradation after 28 days of the test period. Overall, it is believed that the synthesized SALSILs could effectively replace the conventional surfactants in a wide variety of applications. (C) 2019 Published by Elsevier Ltd.
机译:由于其量身定制和生态友好的特性,已经出现了基于离子液体(ILS)的表面活性剂作为常规表面活性剂的替代物。因此,本研究描述了利用月桂酰杀菌阴离子和吡咯烷,吡咯烷酮,吡啶鎓,吡啶鎓,哌啶,哌啶,哌啶,吡啶鎓,吡啶鎓阳离子的九种新的脂肪氨基酸的合成。合成的表面活性月桂酰基脱氨酸离子液体(SALSIL)的特征在于H-1 NMR,C-13 NMR和TGA。接下来,测定表面张力和临界胶束浓度,并与基于ILS的表面活性剂的表面性质进行比较。此外,评价合成溶血硅的毒性和生物降解性以确认其安全高效的过程应用。研究表明,含有吡啶阳离子的九个合成的沙油中的三种表现出强烈的对测试微生物生长的活性。剩下的六种Salsil符合展示中度至低活性的生物相容性措施取决于测试的微生物。含有吗啉和哌啶阳离子的脂环族辣味醇在试验期28天后已经证明了100%的生物降解。总的来说,据信合成的Salsils可以有效地替代各种应用中的常规表面活性剂。 (c)2019年由elestvier有限公司发布

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