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A method for the fabrication of low-noise carbon fiber nanoelectrodes

机译:一种低噪声碳纤维纳米电极的制备方法

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A new and facile method has been developed for the fabrication of low-noise carbon fiber microelectrodes (CFMEs) and carbon fiber nanoelectrodes (CFNEs). The carbon fiber was name-fuse sealed in the tip of the glass capillary. The CFMEs were made by cutting the protruding carbon fiber to the desired length, and the CFNEs were achieved by etching the protruding carbon on the flame to form a nanometer-scale tip. The tip of CFNEs can be controlled within the range from 100 to 300 nm. Thus, no epoxy wax was involved in the CFMEs and CFNEs, The experimental results of inspecting CFMEs and CFNEs by scanning electron microscopy demonstrated that the surface of the electrodes and the glass/fiber interface are very smooth. Therefore, the noise caused by the glass/fiber of these electrodes is much lower than that of the electrodes fabricated conventionlly. The electrodes were characterized bq ferricyanide, catecholamine (dopamine, DA), norepinephrine (NE), and epinephrine (E)) and 5-hydroxytryptamine (5-HT) neurotransmitters using CV, LSV, DPV, and FSCV. The results showed that the CFMEs and CFNEs have very excellent electrochemical behavior and high sensitivity, The CV and DPV detection limits of DA, NE, and E are 7.6 x 10(-8), 7.0 x 10(-8), and 5.0 x 10(-8) mol/L, and the DPV detection limits of DA, NE, and E are 4.0 x 10(-8), 1.0 x 10(-7), and 2.2 x 10(-7) mol/L, respectively. This experiment offers a new and facile method for the fabrication of CFMEs and CFNEs of very high sensitivity and low noise.
机译:已经开发出一种新的且容易的方法来制造低噪声碳纤维微电极(CFME)和碳纤维纳米电极(CFNE)。将碳纤维熔断在玻璃毛细管的尖端。通过将凸出的碳纤维切割成所需的长度来制造CFME,并通过在火焰上蚀刻凸出的碳以形成纳米级尖端来获得CFNE。 CFNE的尖端可以控制在100至300 nm的范围内。因此,CFME和CFNE中不包含环氧蜡。通过扫描电子显微镜检查CFME和CFNE的实验结果表明,电极表面和玻璃/纤维界面非常光滑。因此,由这些电极的玻璃/纤维引起的噪声远低于常规制造的电极的噪声。电极使用CV,LSV,DPV和FSCV表征铁氰化物,儿茶酚胺(多巴胺,DA),去甲肾上腺素(NE)和肾上腺素(E)和5-羟色胺(5-HT)神经递质。结果表明,CFME和CFNE具有非常好的电化学行为和高灵敏度,DA,NE和E的CV和DPV检测限分别为7.6 x 10(-8),7.0 x 10(-8)和5.0 x 10(-8)mol / L,DA,NE和E的DPV检测限为4.0 x 10(-8),1.0 x 10(-7)和2.2 x 10(-7)mol / L,分别。该实验为高灵敏度和低噪声的CFME和CFNE的制造提供了一种新的简便方法。

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