Patra Anushis, Pandey Siddharth
Department of Chemistry, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.
ACS Phys Chem Au. 2024 Jul 18;4(5):531-535. doi: 10.1021/acsphyschemau.4c00031. eCollection 2024 Sep 25.
The versatility of environmentally benign and inexpensive deep eutectic solvents (DESs) lies in their widely varying physicochemical properties. Depending on its constituents, a DES may be highly polar or nonpolar in nature. This offers an enticing possibility of formation of novel nonaqueous microemulsions (MEs). Evidence of the presence of polar DES-in-nonpolar DES MEs is presented with reline (formed by mixing choline chloride and urea in 1 : 2 mol ratio) as the polar DES forming the ME pools, Thy : DA [formed by mixing thymol (Thy) and -decanoic acid (DA) in 1 : 1 mol ratio] nonpolar DES as the bulk oil phase and nonionic surfactant Brij-35 as the emulsifying agent. While only sparingly miscible in Thy : DA, as high as 2.5 M reline can be solubilized in this DES in the presence of 100 mM Brij-35; reline loading ( = [reline]/[Brij-35]) as high as 25 can be achieved. The ternary phase diagram of the Thy : DA/Brij-35/reline system reveals a clear and transparent single-phase region where MEs may be forming. Dynamic light scattering confirms the presence of MEs of 2-10 nm size. Even as up to 2.5 M (ca. 0.35 mole fraction) reline, whose dynamic viscosity (η) and electrical conductivity (κ) are very high, is added to 100 mM Brij-35 solution of Thy : DA, the η and κ values of the solution increase insignificantly, thus conforming to the formation of MEs in the solution. Fourier transform infrared (FTIR) absorbance spectra and fluorescence probe responses further indicate that reline is not dispersed in the medium but rather forms polar pools of the MEs. These novel nonaqueous polar DES-in-nonpolar DES MEs will not only expand the application potential of DESs but also offer a new class of organized media with widespread potential.
环境友好且价格低廉的低共熔溶剂(DESs)的多功能性在于其广泛多样的物理化学性质。根据其成分,DES在性质上可能是高度极性的或非极性的。这为形成新型非水微乳液(MEs)提供了诱人的可能性。本文以作为形成ME池的极性DES的reline(由氯化胆碱和尿素按1:2摩尔比混合而成)、作为油相主体的Thy:DA [由百里酚(Thy)和癸酸(DA)按1:1摩尔比混合而成]非极性DES以及非离子表面活性剂Brij-35作为乳化剂,展示了极性DES-in-非极性DES MEs存在的证据。虽然reline在Thy:DA中仅有少量互溶,但在100 mM Brij-35存在的情况下,高达2.5 M的reline可溶解于该DES中;可实现高达25的reline负载量( = [reline]/[Brij-35])。Thy:DA/Brij-35/reline体系的三元相图显示出一个清晰透明的单相区域,在此区域可能形成MEs。动态光散射证实存在尺寸为2 - 10 nm的MEs。即使将高达2.5 M(约0.35摩尔分数)的reline(其动态粘度(η)和电导率(κ)非常高)添加到100 mM Brij-35的Thy:DA溶液中,溶液的η和κ值增加不显著,从而证实溶液中形成了MEs。傅里叶变换红外(FTIR)吸收光谱和荧光探针响应进一步表明,reline并非分散在介质中,而是形成了MEs的极性池。这些新型非水极性DES-in-非极性DES MEs不仅将扩大DESs的应用潜力,还将提供一类具有广泛潜力的新型有序介质。