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Carbon Nanotube-Based Microelectrodes for Enhanced Neurochemical Detection

机译:基于碳纳米管的微电极,用于增强神经化学检测

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Carbon nanotube (CNT) fiber microelectrodes have been developed as electrode materials for the detection of neurotransmitters using fast scan cyclic voltammetry (FSCV). We have used acid-wet spinning to create "neat" carbon nanotube fibers and utilized them as electrode materials. Thirty-forty micron diameter acid spun CNT fiber microelectrodes were more sensitive than PEI-CNT fiber microelectrodes, with a 3 nM limit of detection. They also had faster electron transfer kinetics and a greater reversibility for the oxidation of dopamine using FSCV than CFMEs and other carbon nanomaterials. The acid spun CNT fiber microelectrodes also displayed a frequency independent response for the peak oxidation current of dopamine. This property was also seen in other CNT materials such as PEI-CNT fiber microelectrodes and CNT-Yarn microelectrodes. Upon varying the frequency from 10 Hz to 100 Hz, there was no decrease in sensitivity. When scanning at 2,000 V/s, there was no decrease in sensitivity upon changing the frequency from 10 Hz to 500 Hz. This could potentially allow for a 2 ms sampling rate for FSCV, comparable to those used with amperometry as opposed to 100 ms temporal resolution of traditional FSCV, an almost two orders of magnitude difference. Since the frequency independent response is seen with many CNT fibers/yarns, it suggests it is a fundamental property of the CNTs shared by many types of CNT fibers and yarns.
机译:已经开发了碳纳米管(CNT)纤维微电极作为使用快速扫描循环伏安法(FSCV)检测神经递质的电极材料。我们使用酸湿纺织纺丝以产生“整齐”的碳纳米管纤维,并用作电极材料。三十四十微米直径酸纺CNT光纤微电极比PEI-CNT光纤微电极更敏感,检测限制为3nm。它们还具有更快的电子转移动力学和使用FSCV氧化多巴胺的更大的可逆性,而不是CFMES和其他碳纳米材料。酸纺CNT光纤微电极也显示出多巴胺的峰值氧化电流的频率无关响应。该特性也在其他CNT材料中看到,例如PEI-CNT光纤微电极和CNT-YARN微电极。改变10 Hz至100Hz的频率后,敏感性没有降低。扫描2,000 v / s时,在将频率从10 Hz变为500Hz时,敏感性不会降低。这可能允许用于FSCV的2 ms采样率,与具有安培测量使用的相比,与传统FSCV的100ms时间分辨率相比,几乎两个数量差。由于许多CNT纤维/纱线观察到频率独立响应,因此它表明它是由许多类型的CNT纤维和纱线共享的CNT的基本性质。

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