Shah Ankit, Kuddushi Muzammil, Rajput Sargam, El Seoud Omar A, Malek Naved I
Applied Chemistry Department, S.V. National Institute of Technology, Surat 395007, Gujarat, India.
Institute of Chemistry, The University of Sao Paulo, 748 Prof. Lineu Prestes Av., Sao Paulo SP 05508-000, Brazil.
ACS Omega. 2018 Dec 19;3(12):17751-17761. doi: 10.1021/acsomega.8b02455. eCollection 2018 Dec 31.
Surfactant-mediated coacervates are termed as the new age microreactors for their ability to spontaneously sequester the molecules with varied polarities and functionalities. Efforts to emulate this applicability of coacervates through synthetic control of surfactant structures are finding success; however, there is little understanding of how to translate these changes into tailor-made properties. Herein, we designed 3-methyl-1-(octyloxycarbonylmethyl)imidazolium bromide (CEMeImBr), an ester-functionalized ionic liquid-based surfactant, which shows better surface active properties than the nonfunctionalized and conventional cationic surfactant and forms complex coacervates over the broad range of concentration with sodium salicylate (NaSal). Mono- and divalent cations as well as ionic strength, viscosity, and time-dependent stability of the coacervates had also been addressed in order to study whether these coacervates could work as microreactors to encapsulate various molecules. The anionic charged complex coacervates with sponge morphology and honey comb-like interior show good efficiency to sequester cationic dyes from water because of electrostatic and hydrophobic interactions and good encapsulation efficiency for curcumin owing to their high surface area. Results suggest that ionic liquid-based coacervates studied here could be exploited as a novel low-cost, effective, and environmentally benign alternative to sequester dyes from the contaminated water and their recovery.
表面活性剂介导的凝聚层因其能够自发地隔离具有不同极性和功能的分子而被称为新时代的微反应器。通过对表面活性剂结构进行合成控制来模拟凝聚层这种适用性的努力正在取得成功;然而,对于如何将这些变化转化为定制特性却知之甚少。在此,我们设计了3-甲基-1-(辛氧基羰基甲基)溴化咪唑鎓(CEMeImBr),一种酯功能化的离子液体基表面活性剂,它比未功能化的传统阳离子表面活性剂表现出更好的表面活性性能,并且在较宽的浓度范围内与水杨酸钠(NaSal)形成复合凝聚层。还研究了单价和二价阳离子以及凝聚层的离子强度、粘度和时间依赖性稳定性,以探讨这些凝聚层是否可以作为微反应器来封装各种分子。具有海绵形态和蜂窝状内部结构的带负电荷的复合凝聚层,由于静电和疏水相互作用,具有从水中隔离阳离子染料的良好效率,并且由于其高表面积,对姜黄素具有良好的包封效率。结果表明,本文研究的基于离子液体的凝聚层可作为一种新型的低成本、有效且环境友好的替代品,用于从受污染水中隔离染料并进行回收。