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含侧链偶氮苯的肽介导的超分子相选择性凝胶化:超声的影响以及染料去除和溢油修复的潜力

Supramolecular phase-selective gelation by peptides bearing side-chain azobenzenes: effect of ultrasound and potential for dye removal and oil spill remediation.

作者信息

Bachl Jürgen, Oehm Stefan, Mayr Judith, Cativiela Carlos, Marrero-Tellado José Juan, Díaz David Díaz

机构信息

Institut für Organische Chemie, Universität Regensburg, Universitätsstr. 31, Regensburg 93053, Germany.

Instituto de Síntesis Química y Catálisis Homogénea (ISQCH), CSIC-University of Zaragoza, 50009 Zaragoza, Spain.

出版信息

Int J Mol Sci. 2015 May 22;16(5):11766-84. doi: 10.3390/ijms160511766.

Abstract

Phase selective gelation (PSG) of organic phases from their non-miscible mixtures with water was achieved using tetrapeptides bearing a side-chain azobenzene moiety. The presence of the chromophore allowed PSG at the same concentration as the minimum gelation concentration (MGC) necessary to obtain the gels in pure organic phases. Remarkably, the presence of the water phase during PSG did not impact the thermal, mechanical, and morphological properties of the corresponding organogels. In the case of miscible oil/water mixtures, the entire mixture was gelled, resulting in the formation of quasi-hydrogels. Importantly, PSG could be triggered at room temperature by ultrasound treatment of the mixture or by adding ultrasound-aided concentrated solution of the peptide in an oil-phase to a mixture of the same oil and water. Moreover, the PSG was not affected by the presence of salts or impurities existing in water from natural sources. The process could be scaled-up, and the oil phases (e.g., aromatic solvents, gasoline, diesel fuel) recovered almost quantitatively after a simple distillation process, which also allowed the recovery and reuse of the gelator. Finally, these peptidic gelators could be used to quantitatively remove toxic dyes from aqueous solutions.

摘要

使用带有侧链偶氮苯部分的四肽实现了有机相与水的非混溶混合物的相选择性凝胶化(PSG)。发色团的存在使得在与纯有机相中形成凝胶所需的最低凝胶化浓度(MGC)相同的浓度下实现PSG。值得注意的是,PSG过程中水相的存在并未影响相应有机凝胶的热性能、机械性能和形态学性能。在可混溶的油/水混合物的情况下,整个混合物会凝胶化,从而形成准水凝胶。重要的是,通过对混合物进行超声处理或通过将肽在油相中的超声辅助浓缩溶液加入到相同油和水的混合物中,可以在室温下引发PSG。此外,PSG不受天然水源水中存在的盐或杂质的影响。该过程可以扩大规模,并且在简单蒸馏过程后,油相(例如芳香族溶剂、汽油、柴油燃料)几乎可以定量回收,这也使得凝胶剂能够回收和再利用。最后,这些肽类凝胶剂可用于从水溶液中定量去除有毒染料

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e211/4463729/1508acd0bc73/ijms-16-11766-g001.jpg

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