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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A novel microchip based on indium tin oxide coated glass for contactless conductivity detection
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A novel microchip based on indium tin oxide coated glass for contactless conductivity detection

机译:一种基于氧化铟锡涂层玻璃的新型微芯片,用于非接触式电导率检测

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摘要

A microfluidic chip manufactured from glass substrate and indium tin oxide (ITO) coated glass use for contactless conductivity detection was developed. The detecting electrodes were fabricated by screen-printing and chemical etching methods using an ITO-coated glass wafer. Then, the glass substrate containing separation channels was bonded with the bare side of the processed ITO-coated glass, thus producing an electrophoresis chip integrated with contactless conductivity detector. The prepared microchip displayed considerable stability and reproducibility. Sensitive response was obtained at optimal conditions (including the gap between electrodes, excitation frequency, and excitation voltage). The feasibility of this microfluidic device was examined by detection of inorganic ions, and further demonstrated by the quantification of aminopyrine and caffeine in a compound pharmaceutical. The two ingredients can be completely separated within 1 min. The detection limits were 8 μg mL ~(-1) and 3 μg mL~(-1), respectively; with the correlation coefficient of 0.996-0.998 in the linear range from 10 μg mL~(-1) to 800 μg mL~(-1). The results have showed that the present method is sensitive, reliable and fast.
机译:开发了由玻璃基板和氧化铟锡(ITO)涂层玻璃制成的微流控芯片,用于非接触式电导率检测。使用丝网印刷和化学蚀刻方法,使用涂有ITO的玻璃晶片制造检测电极。然后,将包含分离通道的玻璃基板与处理后的涂有ITO的玻璃的裸露面粘合,从而制得集成有非接触电导检测器的电泳芯片。所制备的微芯片显示出相当大的稳定性和可重复性。在最佳条件下(包括电极之间的间隙,激励频率和激励电压)获得了敏感响应。通过检测无机离子检查了这种微流控设备的可行性,并通过复合药物中氨基比林和咖啡因的定量进一步证明了这一可行性。两种成分可以在1分钟内完全分离。检出限分别为8μgmL〜(-1)和3μgmL〜(-1);在从10μgmL〜(-1)到800μgmL〜(-1)的线性范围内,相关系数为0.996-0.998。结果表明,该方法灵敏,可靠,快速。

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