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Fabrication and Characterization of Boron-Doped Ultrananocrystalline Diamond Microelectrodes Modified with Multi-Walled Carbon Nanotubes and Nafion

机译:用多壁碳纳米管和Nafion改性硼掺杂超混晶金刚石微电极的制造与表征

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Electroanalytical methods are increasingly used in the understanding of the complexity of the human brain function in normal and diseased states. The main component of the electroanalytical methods is an electrode and its electrochemical properties are linked to the overall performance of the sensor used in detecting the various electroactive brain chemicals and molecules. In this work, we developed a droplet-based microfluidic platform and characterized a boron-doped ultrananocrystalline diamond (BDUNCD) microelectrode that is modified with multi-walled carbon nanotubes (MWCNTs) thin film and nafion coatings. The coating parameters were systematically altered and studied their effect on dopamine (DA) sensing performance. BDUNCD microelectrodes that were modified with 50 nm thick nafion coating showed a 3-fold increase in DA detection signal, whereas the microelectrodes modified with MWCNT film and nafion coating showed a 10-fold increase in the detection signal. The un-modified and modified BDUNCD microelectrodes were evaluated for their long-term stability (up to 9 h) using a custom droplet-based microfluidics. The MWCNT-nafion modified BDUNCD microelectrode showed the highest sensitivity of 15.01 μA ± 0.2% for 100 μM DA concentration with a limit of detection of 1.78 nM ± 2%.
机译:越来越多地用于了解正常和患病状态的人脑功能的复杂性的电解学方法。电扫描方法的主要成分是电极,其电化学性质与用于检测各种电活性脑化学品和分子的传感器的整体性能相关联。在这项工作中,我们开发了一种基于液滴的微流体平台,其特征在于硼掺杂的超晶金刚石(BDuncD)微电极,其用多壁碳纳米管(MWCNT)薄膜和Nafion涂层改性。系统地改变涂料参数,并研究了它们对多巴胺(DA)感测性能的影响。用50nm厚的Nafion涂层改性的Bduncd微电极显示出DA检测信号的3倍,而用MWCNT膜和Nafion涂层改性的微电极显示出检测信号的增加。使用定制液滴的微流体评估未修饰和改性的BDuncD微电极的长期稳定性(最多9小时)。 MWCNT-Nafion改性的BDunc微电极显示出100μmDA浓度为15.01μA±0.2%的最高灵敏度,其检测限为1.78nm±2%。

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