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Development of a Novel Combined Scanning Electrochemical Microscope (SECM) and Scanning Ion-Conductance Microscope (SICM) Probe for Soft Sample Imaging

机译:开发新型组合扫描电化学显微镜(SECM)和扫描离子电导显微镜(SECT)探针,用于软样品成像

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By incorporating a localized heating system within a scanning ion-conductance microscopy (SICM) system, we have performed stable 'hopping-mode' (HPICM) imaging for live cells maintained at temperatures ranging up to human body temperature. This allows the accurate study of cell volume and morphology variation versus temperature over extended periods of time. The integration of SICM with scanning electrochemical microscopy (SECM) provides the simultaneous mapping of electrochemical and topographic information for soft samples, such as live cells. This combined technique overcomes the limitations of resolution and topographical artifacts typically associated with SECM. However, previously reported SECMSICM probe production required expensive and time-consuming focused ion beam (FIB) methods and produced pipettes that are typically hundreds of nanometers in diameter. We report a simple and rapid production method for SECM-SICM double-barrel probes with apertures down to 20 nm in diameter. The characterization of these SECM-SICM probes using scanning electron microscopy (SEM) imaging, cyclic voltammetry (CV) and Raman spectroscopy is also detailed. These SECM-SICM probes were subsequently used to study the morphology and electrochemical activity of several samples, ranging from hard metallic/insulating samples to live cells.
机译:通过在扫描离子电导显微镜(SICM)系统内的局部加热系统结合,我们已经对维持在人体温的温度保持的活细胞进行了稳定的“跳跃模式”(HPICM)成像。这允许在延长的时间段内准确地研究细胞体积和形态变化与温度。用扫描电化学显微镜(SECM)的SICM的整合提供了用于软样品的电化学和地形信息的同时映射,例如活细胞。这种组合技术克服了通常与SECM相关联的分辨率和地形伪影的局限性。然而,先前报道的SECMSICM探测器生产需要昂贵且耗时的聚焦离子束(FIB)方法,并产生的液滴通常是直径数百纳米。我们报告了一种简单而快速的生产方法,对于SECM-SICM双筒探针,孔径直径为20nm。还详细说明了使用扫描电子显微镜(SEM)成像,循环伏安法(CV)和拉曼光谱的这些SECM-SICM探针的表征。随后使用这些SECM-SICM探针研究几种样品的形态和电化学活性,范围从硬质金属/绝缘样品到活细胞。

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