Lo Chung Keung, Paau Man Chin, Xiao Dan, Choi Martin M F
Department of Chemistry, Hong Kong Baptist University, Hong Kong SAR, P. R. China.
Electrophoresis. 2008 Jun;29(11):2330-9. doi: 10.1002/elps.200700562.
An effective capillary electrophoretic technique for separating samples of negatively charged, polydisperse, water-soluble gold monolayer-protected cluster (Au MPC) protected by monolayers of N-acetyl-L-cysteine has been developed. The separation mechanisms of the Au MPC in CZE suggest that the larger core sizes Au MPC emerge first from the capillary. The electrophoretic separation depends on pH, buffer concentration, and organic modifiers. The addition of aliphatic alcohols to the run buffer can improve the separation of Au MPC by reducing the EOF and changing the selectivity between the Au MPCs. The enhancement of resolution is attributed to the more significant difference in the charge-to-size ratio between the Au MPCs. The run buffer containing 20 v/v % ethanol provides the best separation for water-soluble Au MPC. Our proposed CE method provides a powerful tool to evaluate and separate the water-soluble Au MPC products.
已开发出一种有效的毛细管电泳技术,用于分离由N-乙酰-L-半胱氨酸单层保护的带负电荷、多分散、水溶性金单层保护簇(Au MPC)的样品。Au MPC在毛细管区带电泳中的分离机制表明,较大核尺寸的Au MPC首先从毛细管中流出。电泳分离取决于pH值、缓冲液浓度和有机改性剂。向运行缓冲液中添加脂肪醇可以通过降低电渗流和改变Au MPC之间的选择性来改善Au MPC的分离。分辨率的提高归因于Au MPC之间电荷与尺寸比的更显著差异。含有20 v/v%乙醇的运行缓冲液为水溶性Au MPC提供了最佳分离效果。我们提出的毛细管电泳方法为评估和分离水溶性Au MPC产品提供了一个强大的工具。