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    识别酪氨酸对映体的分子印迹电化学传感器

    Molecular-Imprinted Electrochemical Sensor for Recognization of Enantiomorphs of D-Tyrosine and L-Tyrosine

    • 摘要: 掺杂有模板分子L-苯基乳酸的聚吡咯膜通过循环伏安法聚合到碳糊电极表面.在0.1 mol·L-1 NaOH溶液中恒电位过氧化处理,将此修饰电极先在D-酪氨酸溶液中富集,在pH 2.0的0.1 mol·L-1 KCl溶液中溶出.然后将修饰电极再置于0.1 mol·L-1 NaOH溶液过氧化处理,以洗脱残留在电极上的D-酪氨酸,按同样方法测试L-酪氨酸.酪氨酸对映体在经过掺杂和过氧化洗脱的聚吡咯电极表面的溶出电位比裸碳糊电极的溶出电位向负方向移动了大约200 mV.在最优化的工作条件下,L-酪氨酸与D-酪氨酸溶出峰电流的比值可以达到2.18.

       

      Abstract: Polypyrrole membrane,which was spiked with template molecules of L-phenyl lactic acid,was polymerized electrochemically on to the surface of pasty carbon electrode by cyclic voltammetry,and then the electrode was peroxidized in 0.1 mol·L-1 NaOH solution.The modified pasty carbon electrode obtained as mentioned above was used as the working electrode,platinum wire was used as counter electrode and saturated calomel electrode as reference electrode,and 1 mmol·L-1 D-tyrosine solution was enriched on the modified electrode from the solution at pH 2.0 for 20 min,and stripped from the electrode in 0.1 mol·L-1 KCl solution at the same pH value.The I-E curve was recorded by cyclic voltammetry.Residual D-tyrosine remained on the surface of the electrode was removed by peroxidization in 0.1 mol·L-1 NaOH solution.L-tyrosine was then tested by the same method.Stripping potentials of the enantiomorphs of tyrosine at the modified electrode were moved negatively by 200 mV as compared with the bare pasty carbon electrode.Under the optimum condition,the ratio of values of stripping peak current of L-tyrosine to D-tyrosine was found to be 2.18.

       

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