Department of Chemical Engineering, Kyungpook National University, Daegu 41566, Republic of Korea.
Interface Materials and Chemical Engineering Research Center, Korea Research Institute of Chemical Technology, Daejeon 34114, Republic of Korea.
J Colloid Interface Sci. 2023 Aug;643:82-91. doi: 10.1016/j.jcis.2023.03.201. Epub 2023 Apr 3.
Surface nanodroplets have recently been employed for in situ chemical analysis leveraging their low volume, e.g. O(10 L), that enables rapid analyte extraction and pre-concentration. So far, most surface nanodroplets have been formed using single organic solvents such as 1-octanol, toluene, among others. Designing multicomponent surface nanodroplet with controllable composition is highly desirable for extending their application as extractant.
Here, we formed surface nanodroplets using green deep eutectic solvent (gDES) composed of thymol and decanoic acid, both of which are naturally occurring chemicals. The influence of parameters such as flowrate and the composition of deep eutectic solvent on the surface nanodroplet formation were studied. As proof-of-concept, the gDES surface nanodroplets were further used to extract and detect trace amounts of fluorescent rhodamine 6G dye and copper ions from water.
The formation of gDES surface nanodroplets follows the theoretical model which states that the final droplet volume (V) scales with the Peclét number (Pe) of the flow during formation by the solvent exchange process, that is V ∼ Pe, and the nanodroplets demonstrate excellent ability as extractant for rhodamine 6G and copper ions from water. Surprisingly, the confined volume of gDES surface nanodroplets enables fast and controlled formation of Cu (II)-decanoate crystal.
最近,利用表面纳米液滴的低体积(例如 10 升)进行了原位化学分析,这使得快速提取和预浓缩分析物成为可能。到目前为止,大多数表面纳米液滴都是使用单一有机溶剂形成的,例如 1-辛醇、甲苯等。设计具有可控组成的多组分表面纳米液滴对于扩展其作为萃取剂的应用非常重要。
在这里,我们使用由百里酚和癸酸组成的绿色深共晶溶剂 (gDES) 形成表面纳米液滴,这两种物质都是天然存在的化学物质。研究了流速和深共晶溶剂组成等参数对表面纳米液滴形成的影响。作为概念验证,进一步将 gDES 表面纳米液滴用于从水中提取和检测痕量荧光罗丹明 6G 染料和铜离子。
gDES 表面纳米液滴的形成遵循理论模型,该模型指出,在溶剂交换过程中形成时,最终液滴体积 (V) 与流动的 Peclet 数 (Pe) 成比例,即 V∼Pe,并且纳米液滴表现出从水中提取罗丹明 6G 和铜离子的优异萃取能力。令人惊讶的是,gDES 表面纳米液滴的受限体积能够快速且受控地形成铜 (II)-癸酸盐晶体。