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Current measurements in a wide dynamic range-applications in electrochemical nanotechnology

机译:宽动态范围内的电流测量-电化学纳米技术中的应用

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摘要

Current measurements in a wide dynamic range from low picoamperes up to a few milliamperes are usually carried by implementing logarithmic current-to-voltage converter circuits. Conductance studies in nanoscale metal | molecule | metal junctions require measurements with a high dynamic range, good accuracy and reasonable speed simultaneously. In this work we propose two novel circuit solutions which comply with these conditions: one is based on a high-accuracy, fine-tunable logarithmic current-to-voltage converter. Another circuit implements a double-output (or multiple-output) linear current-to-voltage converter, for which the problem of range-switching has been circumvented. Both circuits were applied in constructing a low-current bipotentiostat dedicated to the electrochemical formation of molecular-scale gaps, and a novel scanning tunnelling microscope preamplifier stage for current-distance spectroscopy studies.
机译:通常,通过实现对数电流-电压转换器电路,可以在从低皮安到几毫安的宽动态范围内进行电流测量。纳米级金属的电导研究|分子|金属结要求同时具有高动态范围,良好的精度和合理的速度进行测量。在这项工作中,我们提出了两种符合这些条件的新颖的电路解决方案:一种基于高精度,可微调对数电流-电压转换器。另一电路实现了双输出(或多输出)线性电流-电压转换器,已经解决了范围切换的问题。两种电路均用于构建低电流双恒电位仪,专门用于分子尺度间隙的电化学形成,以及用于电流距离光谱研究的新型扫描隧道显微镜前置放大器级。

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