Chu Qingcui, Fu Liang, Guan Yueqing, Ye Jiannong
Department of Chemistry, East China Normal University, Shanghai 200062, PR China.
J Sep Sci. 2005 Feb;28(3):234-8. doi: 10.1002/jssc.200400015.
The fast separation capability of a novel miniaturized capillary electrophoresis with amperometric detection (CE-AD) system was demonstrated by determining sugar contents in Coke and diet Coke with an estimated separation efficiency of 60,000 TP/m. Factors influencing the separation and detection processes were examined and optimized. The end-capillary 300 microm Cu wire amperometric detector offers favorable signal-to-noise characteristics at a relatively low potential (+0.50 V vs. Ag/AgCl) for detecting sugars. Three sugars (sucrose, glucose, and fructose) have been separated within 330 s in a 8.5 cm length capillary at a separation voltage of 1000 V using a 50 mM NaOH running buffer (pH 12.7). Highly linear response is obtained for the above compounds over the range of 5.0 to 2.0 x 10(2) microg/mL with low detection limit, down to 0.8 microg/mL for glucose (S/N = 3). The injection-to-injection repeatability for analytes in peak current (RSD < 3.6%) and for migration times (RSD < 1.4%) was excellent. The new miniaturized CE-AD system should find a wide range of analytical applications involving assays of carbohydrates as an alternative to conventional CE and micro-CE.
通过测定可乐和健怡可乐中的糖分,以估计60,000塔板数/米的分离效率,证明了一种新型的带安培检测的微型毛细管电泳(CE-AD)系统的快速分离能力。研究并优化了影响分离和检测过程的因素。末端毛细管300微米铜丝安培检测器在相对较低的电位(相对于Ag/AgCl为+0.50 V)下检测糖分时具有良好的信噪比特性。使用50 mM NaOH运行缓冲液(pH 12.7),在1000 V的分离电压下,8.5厘米长的毛细管内,三种糖(蔗糖、葡萄糖和果糖)在330秒内实现了分离。上述化合物在5.0至2.0×10(2)微克/毫升范围内获得了高度线性响应,检测限低至0.8微克/毫升(葡萄糖,S/N = 3)。分析物的峰电流进样间重复性(RSD < 3.6%)和迁移时间进样间重复性(RSD < 1.4%)都非常出色。这种新型的微型CE-AD系统应能在涉及碳水化合物分析的广泛分析应用中找到用武之地,可作为传统CE和微CE的替代方法。