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Fabrication and Characterization of Dual Function Nanoscale pH-Scanning Ion Conductance Microscopy (SICM) Probes for High Resolution pH Mapping

机译:用于高分辨率pH映射的双功能纳米级pH扫描离子电导显微镜(SICM)探针的制备和表征

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摘要

The easy fabrication and use of nanoscale dual function pH-scanning ion conductance microscopy (SICM) probes is reported. These probes incorporate an iridium oxide coated carbon electrode for pH measurement and an SICM barrel for distance control, enabling simultaneous pH and topography mapping. These pH-SICM probes were fabricated rapidly from laser pulled theta quartz pipets, with the pH electrode prepared by in situ carbon filling of one of the barrels by the pyrolytic decomposition of butane, followed by electrodeposition of a thin layer of hydrous iridium oxide. The other barrel was filled with an electrolyte solution and Ag/AgCl electrode as part of a conductance cell for SICM. The fabricated probes, with pH and SICM sensing elements typically on the 100 nm scale, were characterized by scanning electron microscopy, energy-dispersive X-ray spectroscopy, and various electrochemical measurements. They showed a linear super-Nernstian pH response over a range of pH (pH 2-10). The capability of the pH-SICM probe was demonstrated by detecting both pH and topographical changes during the dissolution of a calcite microcrystal in aqueous solution. This system illustrates the quantitative nature of pH-SICM imaging, because the dissolution process changes the crystal height and interfacial pH (compared to bulk), and each is sensitive to the rate. Both measurements reveal similar dissolution rates, which are in agreement with previously reported literature values measured by classical bulk methods.
机译:据报道,纳米级双功能pH扫描离子电导显微镜(SICM)探针易于制造和使用。这些探头包括用于pH值测量的涂有氧化铱的碳电极和用于距离控制的SICM镜筒,可同时进行pH和形貌图绘制。这些pH-SICM探针是由激光拉制的theta石英移液管快速制成的,其pH电极是通过丁烷的热分解原位填充其中一个桶中的碳,然后电沉积含水氧化铱形成的。另一桶装有电解液和Ag / AgCl电极,作为SICM电导池的一部分。通过扫描电子显微镜,能量色散X射线光谱和各种电化学测量,对通常具有100 nm规模的pH和SICM传感元件的预制探针进行了表征。他们显示了在一定pH范围(pH 2-10)内线性的超能斯特pH响应。通过检测方解石微晶在水溶液中溶解过程中的pH值和形貌变化,证明了pH-SICM探针的功能。该系统说明了pH-SICM成像的定量性质,因为溶解过程会改变晶体高度和界面pH(与体积相比),并且每个都对速率敏感。两种测量均显示出相似的溶出速率,这与先前报道的通过经典本体法测量的文献值相符。

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