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Carbon Nanohorn-Modified Carbon Fiber Microelectrodes for Dopamine Detection

机译:碳纳米角修饰的碳纤维微电极用于多巴胺检测

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摘要

Carbon nanohorns (CNHs), closed cone-shaped cages of sp2-hybridized carbons, are a promising nanomaterial to improve carbon-fiber microelectrode (CFME) dues to their high specific surface area and edge planes, but few studies have tested their electrochemical properties. Here, we tested the dopamine detection at electrodeposited CNHs on CFME (CNH/CFME). The optimized concentration of CNHs in the deposition solution is 0.5 mg/mL, and the optimized electrodeposition waveform is 10 cycles of triangular waveform scanned from –1.0 V and +1.0 V at 50 mV/s. Using fast-scan cyclic voltammetry, the optimized CNH/CFME enhances dopamine peak current to 2.3 ± 0.2 times that of the CFME. To further increase the current, CNH/CFMEs were oxidized in NaOH (ox-CNH/CFME), which creates more defects and surface oxide groups to adsorb dopamine. The oxidative etching further increases the peak current to 3.5 ± 0.2 times of the CFME, and ox-CNH/CFME had a limit of detection of 6 ± 2 nM. The dopamine anodic current at ox-CNH/CFME was stable for 8 h of continuous scanning. The ox-CNH/CFME enhanced the anodic peak current for other cationic neurotransmitters including epinephrine, norepinephrine, and serotonin, but less enhancement was found for ascorbic acid, showing higher selectivity for cationic molecules. CNHs also decreased tissue biofouling at CFME. Thus, electrodeposited CNHs are a promising new method for increasing the surface area and current of CFMEs for dopamine detection.
机译:碳纳米角(CNH)是sp 2 杂化碳的封闭圆锥形笼,由于其高比表面积和边缘平面,是一种有望改善碳纤维微电极(CFME)的纳米材料。很少有研究测试其电化学性质。在这里,我们测试了在CFME(CNH / CFME)上电沉积的CNH上的多巴胺检测。沉积溶液中CNHs的最优化浓度为0.5 mg / mL,最优化的电沉积波形为从–1.0 V和+1.0 V在50 mV / s扫描的10个周期的三角波形。使用快速扫描循环伏安法,优化的CNH / CFME可将多巴胺峰值电流提高到CFME的2.3±0.2倍。为了进一步增加电流,CNH / CFME在NaOH(ox-CNH / CFME)中被氧化,这产生了更多的缺陷和表面氧化物基团,以吸收多巴胺。氧化蚀刻进一步将峰值电流增加到CFME的3.5±0.2倍,并且ox-CNH / CFME的检测极限为6±2 nM。在ox-CNH / CFME上,多巴胺阳极电流在连续扫描8小时后保持稳定。 ox-CNH / CFME增强了其他阳离子神经递质(包括肾上腺素,去甲肾上腺素和5-羟色胺)的阳极峰值电流,但抗坏血酸的增强作用却较小,表明对阳离子分子的选择性更高。 CNHs还减少了CFME的组织生物结垢。因此,电沉积的CNH是增加CFME的表面积和电流以用于多巴胺检测的有希望的新方法。

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