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Insulated Conducting Cantilevered Nanotips and Two-Chamber Recording System for High Resolution Ion Sensing AFM

机译:高分辨率离子感测AFM的绝缘导电悬臂纳米尖端和两室记录系统

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摘要

Biological membranes contain ion channels, which are nanoscale pores allowing controlled ionic transport and mediating key biological functions underlying normal/abnormal living. Synthetic membranes with defined pores are being developed to control various processes, including filtration of pollutants, charge transport for energy storage, and separation of fluids and molecules. Although ionic transport (currents) can be measured with single channel resolution, imaging their structure and ionic currents simultaneously is difficult. Atomic force microscopy enables high resolution imaging of nanoscale structures and can be modified to measure ionic currents simultaneously. Moreover, the ionic currents can also be used to image structures. A simple method for fabricating conducting AFM cantilevers to image pore structures at high resolution is reported. Tungsten microwires with nanoscale tips are insulated except at the apex. This allows simultaneous imaging via cantilever deflections in normal AFM force feedback mode as well as measuring localized ionic currents. These novel probes measure ionic currents as small as picoampere while providing nanoscale spatial resolution surface topography and is suitable for measuring ionic currents and conductance of biological ion channels.
机译:生物膜包含离子通道,这些离子通道是纳米级的孔,允许受控的离子运输并介导正常/异常生活的关键生物学功能。正在开发具有限定孔的合成膜,以控制各种过程,包括污染物的过滤,用于能量存储的电荷传输以及流体和分子的分离。尽管可以通过单通道分辨率测量离子传输(电流),但是很难同时成像其结构和离子电流。原子力显微镜能够对纳米级结构进行高分辨率成像,并可进行修改以同时测量离子电流。此外,离子电流也可以用于成像结构。据报道,一种简单的制造导电AFM悬臂以高分辨率成像孔结构的方法。具有纳米级尖端的钨微丝除了在顶点处绝缘。这允许通过正常AFM力反馈模式下的悬臂偏转同时进行成像,以及测量局部离子电流。这些新型探针可测量与皮安一样小的离子电流,同时提供纳米级的空间分辨率表面形貌,适用于测量离子电流和生物离子通道的电导率。

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