Department of Analytical Chemistry, Facultad de Ciencias, Edificio Anexo Marie Curie, Campus de Rabanales, 14071 Córdoba, Spain.
Anal Chim Acta. 2010 Sep 16;677(2):108-30. doi: 10.1016/j.aca.2010.07.027. Epub 2010 Jul 27.
The increasing pressure to decrease organic solvent usage in laboratories is fostering the search for alternative solvents. The liquid-liquid phase separation of surfactants, induced by environmental conditions, viz. temperature, electrolytes, pH, etc., has been largely used in analytical extraction and concentration schemes. The surfactant-rich phase is a nano-structured liquid, recently named as supramolecular solvent, generated from the amphiphiles through a sequential self-assembly process occurring on two scales, molecular and nano. This review covers progress on both theoretical and practical aspects related to the use of supramolecular solvents in analytical extractions reported over the last decade. Advances allowing a better understanding of the mechanisms of solvent production and solvent structure are outlined. Emphasis is then placed on solvent composition and its consequences on extraction efficiency, concentration factors and suitability for solubilising analytes over a wide range of polarities. Recent developments in formats and strategies making supramolecular solvents compatible with chromatographic and electrophoretic techniques along with a variety of detection systems are discussed. Applications of supramolecular solvents to the extraction of organic compounds mainly in the biological, environmental and agrifood areas are critically reviewed and main future trends outlined.
实验室中减少有机溶剂使用的压力不断增加,促使人们寻找替代溶剂。表面活性剂在环境条件(如温度、电解质、pH 值等)下的液-液相分离,已广泛应用于分析提取和浓缩方案中。富含表面活性剂的相是一种纳米结构的液体,最近被称为超分子溶剂,是通过在两个尺度上发生的顺序自组装过程从两亲物中产生的,即分子和纳米尺度。本综述涵盖了过去十年中有关超分子溶剂在分析提取中应用的理论和实际方面的进展。概述了有助于更好地理解溶剂产生机制和溶剂结构的进展。然后重点讨论了溶剂组成及其对萃取效率、浓缩因子和对宽极性范围内分析物的溶解能力的影响。讨论了超分子溶剂与色谱和电泳技术以及各种检测系统兼容的格式和策略的最新发展。批判性地回顾了超分子溶剂在有机化合物提取中的应用,主要涉及生物、环境和农业食品领域,并概述了主要的未来趋势。