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Rapid Detection of Ascorbic Acid Based on a Dual-Electrode Sensor System Using a Powder Microelectrode Embedded with Carboxyl Multi-Walled Carbon Nanotubes

机译:基于双电极传感器系统的抗坏血酸快速检测方法,该系统使用嵌入了羧基多壁碳纳米管的粉末微电极

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In this paper, carboxyl groups were introduced by liquid oxidation methods onto multi-walled carbon nanotubes (MWCNTs) to improve the MWCNTs’ electrocatalytic properties. A platinum wire microelectrode (ME) was corroded using aqua regia and subsequently embedded with MWCNTs to achieve more active sites, producing a so-called powder microelectrode (PME). Compared with conventional MEs, the PME has a larger specific surface area and more active sites. When PME was used to detect ascorbic acid (AA), the AA oxidation potential shifted negatively and current peak was visibly increased. The calibration curve obtained for AA was in a range of 5.00 × 10 ?6 ~9.50 × 10 ?4 mol·L ?1 : I pa (μA) = 3.259 × 10 ?2 + 1.801 × 10 2 C (mol·L ?1 ) under the optimum testing conditions. Moreover, the detection and quantitation limits were confirmed at 4.89 × 10 ?7 mol·L ?1 and 1.63 × 10 ?7 mol·L ?1 , respectively. When the fabricated PME was practically applied to detect AA, it was shown a recovery rate of 94~107% with relative standard deviation (RSD) <5%. The proposed strategy thus offers a promising, rapid, selective and low-cost approach to effective analysis of AA.
机译:本文通过液相氧化法将羧基引入多壁碳纳米管(MWCNT)上,以提高MWCNT的电催化性能。使用王水腐蚀铂丝微电极(ME),然后将其嵌入MWCNT中以实现更多的活性位,从而生产出所谓的粉末微电极(PME)。与传统的ME相比,PME具有更大的比表面积和更多的活性位点。当使用PME检测抗坏血酸(AA)时,AA氧化电位负向移动,电流峰值明显增加。对于AA获得的校准曲线在5.00×10 -6〜9.50×10 -4mol·L·λ1的范围内:Ipa(μA)= 3.259×10·2 + 1.801×10 2 C(mol·L·λ)。 1)在最佳测试条件下。另外,检测限和定量限分别为4.89×10 7mol·L-1和1.63×10 7mol·L-1。当所制备的PME实际用于检测AA时,其回收率为94〜107%,相对标准偏差(RSD)<5%。因此,所提出的策略为有效分析AA提供了一种有前途的,快速,选择性和低成本的方法。

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