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Electrochemical interface characterization of MEMS based brain implantable all-diamond microelectrodes probe

机译:基于MEMS的脑植入全金刚石微电极探针的电化学界面表征

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摘要

All-diamond micro-machined neural probe is a new generation of neural probes completely fabricated by the poly-carbon process. It has excellent properties required for neural prosthetic applications such as wider potential window, low background current, very high and low electrical resistivities for undoped and doped poly-carbon respectively, mechanical flexibility and biocompatibility. The interface characterization, equivalent model and electrochemical analysis of this probe is presented in this paper. The double layer capacitance is function of microelectrode size and is found to be approximately 3.78 µF/cm2. It exhibits a completely reversible electrochemical nature resulting in a stable behavior in aqueous chemical environment.
机译:全金刚石微加工神经探针是完全通过聚碳酸酯工艺制造的新一代神经探针。它具有神经修复应用所需的优异性能,例如更宽的电势窗口,低背景电流,分别用于未掺杂和掺杂的聚碳酸酯的极高和低电阻率,机械柔韧性和生物相容性。本文介绍了该探针的界面表征,等效模型和电化学分析。双层电容是微电极尺寸的函数,发现约为3.78 µF / cm 2 。它具有完全可逆的电化学性质,因此在水性化学环境中具有稳定的行为。

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