Han Ji Hye, Chun Man-Seog, Riaz Asif, Chung Doo Soo
School of Chemistry, Seoul National University, Seoul, Korea.
Electrophoresis. 2005 Jan;26(2):480-6. doi: 10.1002/elps.200410274.
For large-volume stacking with the electroosmotic flow pump (LVSEP) in capillary electrophoresis of anionic analytes it is required that the electroosmotic mobility (EOM) should be smaller than the magnitudes of the effective mobilities of the analytes. When a fused-silica capillary is treated with an acidic solution, the silanoate group on the silica surface is neutralized to silanol and the EOM is suppressed. Due to the slow deprotonation equilibrium of the silanol group at an intermediate pH, this reduced EOM can be retained during a number of electrophoresis runs. Using a bare fused-silica capillary preconditioned with 0.01 M HCl, successful LVSEP at pH 6.0 was achieved for weakly acidic compounds with two orders of magnitude enhancements in the concentration sensitivity. The repeatability in migration times of ten analytes stacked by LVSEP in a single day was excellent with the relative standard deviation (RSD) less than 1% (n = 6). The day-to-day repeatability was also excellent with RSD less than 3% (n = 3 x 6) when the capillary was preconditioned each day.
对于在阴离子分析物的毛细管电泳中使用电渗流泵进行大体积堆积(LVSEP),要求电渗迁移率(EOM)应小于分析物有效迁移率的大小。当用酸性溶液处理熔融石英毛细管时,二氧化硅表面的硅烷酸酯基团被中和为硅醇,电渗迁移率受到抑制。由于硅醇基团在中间pH值下的去质子化平衡缓慢,这种降低的电渗迁移率可以在多次电泳运行中保持。使用用0.01 M HCl预处理的裸熔融石英毛细管,对于弱酸性化合物在pH 6.0时成功实现了LVSEP,浓度灵敏度提高了两个数量级。在一天内通过LVSEP堆积的十种分析物迁移时间的重复性非常好,相对标准偏差(RSD)小于1%(n = 6)。当每天对毛细管进行预处理时,日间重复性也非常好,RSD小于3%(n = 3×6)。