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首页> 外文期刊>Analytical chemistry >SCANNING ELECTROCHEMICAL MICROSCOPY .28. ION-SELECTIVE NEUTRAL CARRIER-BASED MICROELECTRODE POTENTIOMETRY
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SCANNING ELECTROCHEMICAL MICROSCOPY .28. ION-SELECTIVE NEUTRAL CARRIER-BASED MICROELECTRODE POTENTIOMETRY

机译:扫描电化学显微镜.28。基于离子选择中性载体的微电极电位计

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摘要

Electrodes for scanning ion-selective potentiometric microscopy (or potentiometric SECM) were developed and used to image local concentration profiles of NH4+, K+ and Zn2+ ions. Neutral carrier-based micropipet ion-selective electrodes with high spatial resolution (similar to 2-3 pm) and fast response time (similar to 300 ms) were fabricated and employed as potentiometric SECM tips, and high-resolution ion-selective images around micrometer-scale objects were obtained for selected model systems. This technique was also used to map enzyme activity and to measure concentrations within the diffusion layer of an ultramicroelectrode. Several methods are used to determine the absolute distance between tip and target on the basis of measurement of solution resistance using Ag/AgCl micropipet electrodes or potentiometric measurement of the steady-state concentration profile using ion-selective microelectrodes; the corresponding theories of both are presented, Dual-channel tips are also introduced for ion-selective potentiometric microscopy. In these, one channel operates as an ion-selective electrode and the other as a distance sensor. Quantitative concentration profiles can be obtained with knowledge of absolute tip position.
机译:开发了用于扫描离子选择电位显微镜(或电位SECM)的电极,并将其用于成像NH4 +,K +和Zn2 +离子的局部浓度分布。制备了具有高空间分辨率(类似于2-3 pm)和快速响应时间(类似于300 ms)的基于中性载体的微量移液离子选择电极,并将其用作电位SECM尖端,并在千分尺附近获得了高分辨率离子选择图像为选定的模型系统获得了比例对象。该技术还用于绘制酶活性图并测量超微电极扩散层内的浓度。基于使用Ag / AgCl微吸管电极测量溶液电阻或使用离子选择微电极对稳态浓度分布进行电位测量的方法,有几种方法可用于确定尖端与目标之间的绝对距离。介绍了两者的相应理论,还介绍了用于离子选择电位显微镜的双通道探针。在这些通道中,一个通道用作离子选择电极,另一通道用作距离传感器。可以通过绝对笔尖位置的知识获得定量浓度曲线。

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