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DYNAMIC ON-COLUMN PH MONITORING IN CAPILLARY ELECTROPHORESIS - APPLICATION TO VOLUME LIMITED OUTLET VIALS

机译:毛细管电泳中的动态柱上pH监测-在容量有限的出口样品瓶中的应用

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With capillary electrophoresis, buffer pH must be constant to achieve consistent migration times. Irreproducible separations have been attributed to pH changes due to water hydrolysis in the inlet/outlet vials. A method of measuring the pH of the electrolyte on-column is described that uses wavelength-resolved fluorescence detection. C.SNARF-1 is a fluorescent pH indicator that has a large change in fluorescence emission profile depending on pH. When it is incorporated into the running buffer, monitoring the pH-dependent emission spectra of the C.SNARF-1 allows column pH to be calculated. With reduced-volume outlet buffer vials in the nanoliter to low microliter range, significant changes in pH and column conductivity are measured during a single electrophoretic run, with pH fronts greater than 3 units passing a fixed point on the capillary over a several second period. These changes appear to be caused by reverse-migrating OH- produced at the capillary outlet by the hydrolysis of water.
机译:使用毛细管电泳时,缓冲液的pH必须保持恒定才能达到一致的迁移时间。不可重复的分离归因于由于进水/出水小瓶中的水水解而导致的pH值变化。描述了一种使用波长分辨的荧光检测来测量柱上电解质的pH的方法。 C.SNARF-1是一种荧光pH指示剂,其荧光发射曲线随pH的变化较大。将其掺入运行缓冲液后,监控C.SNARF-1的pH依赖性发射光谱可计算出色谱柱的pH。对于体积从纳升到低微升范围的减小体积的出口缓冲液样品瓶,在一次电泳过程中可测量pH和柱电导率的显着变化,pH值大于3个单位的毛细管在数秒内通过固定点。这些变化似乎是由于水的水解在毛细管出口产生的OH-反向迁移引起的。

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