Paull Brett, Nesterenko Pavel N
National Centre for Sensor Research, School of Chemical Sciences, Dublin City University, Glasnevin, Dublin 9, Ireland.
Analyst. 2005 Feb;130(2):134-46. doi: 10.1039/b406355b. Epub 2004 Oct 21.
Ion chromatography (IC) has a proven track record in the determination of inorganic and organic anions and cations in complex matrices. Recently, application of IC to the separation and determination of bio-molecules such as amino acids, carbohydrates, nucleotides, proteins and peptides has also received much attention. The key to the determination of all of the above species in the most analytically challenging complex matrices is the ability to manipulate selectivity through control of stationary phase chemistry, mobile phase chemistry and the choice of detection method. This Tutorial Review summarises some of the most significant recent advances made in IC stationary phase technology. In particular, the review details stationary phases specifically designed for ion analysis in complex sample matrices, and considers in which direction future stationary phase development might proceed.
离子色谱(IC)在测定复杂基质中的无机和有机阴离子及阳离子方面有着可靠的记录。最近,离子色谱在分离和测定生物分子(如氨基酸、碳水化合物、核苷酸、蛋白质和肽)方面的应用也备受关注。在极具分析挑战性的复杂基质中测定上述所有物质的关键在于,能够通过控制固定相化学、流动相化学以及检测方法的选择来操控选择性。本专题综述总结了离子色谱固定相技术最近取得的一些最重要的进展。特别是,该综述详细介绍了专门为复杂样品基质中的离子分析设计的固定相,并探讨了未来固定相的发展方向。