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首页> 外文期刊>Bioelectrochemistry >Amperometric biosensor based on multilayer containing carbon nanotube, plasma-polymerized film, electron transfer mediator phenothiazine, and glucose dehydrogenase
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Amperometric biosensor based on multilayer containing carbon nanotube, plasma-polymerized film, electron transfer mediator phenothiazine, and glucose dehydrogenase

机译:基于包含碳纳米管,等离子体聚合膜,电子传递介质吩噻嗪和葡萄糖脱氢酶的多层膜的安培生物传感器

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摘要

We report on a novel fabrication approach of amperometric biosensor based on multilayer films containing carbon nanotubes (CNT), a nano-thin plasma-polymerized film (PPF), electron transfer mediator phenothiazine (PT), and enzyme glucose dehydrogenase (GDH). The configuration of the electrochemical electrode is sequentially composed of sputtered gold, acetonitrile PPF, PT, GDH, and acetonitrile PPF (denoted as PPF/GDH/PT/CNT/PPF/Au). First PPF deposited on Au acts as a permselective membrane and as a scaffold for CNT layer formation. Second PPF directly deposited on GDH acts as a matrix for enzyme immobilization. To facilitate the electrochemical communication between the CNT layer and GDH, CNT was treated with nitrogen plasma. The electron transfer mediator PT plays a role as the mediator in which the electron caused by enzymatic reaction transports to the electrode. The synergy between the mediator and CNT provides benefits in terms of lowering the operational potential and enhancing the sensitivity (current). The optimized glucose biosensor revealed a sensitivity of 5.1±0.9μAmM ~(-1)cm ~(-2) at +0.2V vs. Ag/AgCl, linear dynamic range of 4.9-19mM, and a response time of 5±1s. Unlike conventional wet-chemical processes that are incompatible with mass production techniques, this dry-chemistry procedure has great potential for enabling high-throughput production of bioelectronic devices. Furthermore, those devices can be applied and expands for the cell biological functional field as a useful, helpful, or indispensable tool.
机译:我们报告了基于包含碳纳米管(CNT),纳米薄等离子体聚合膜(PPF),电子传递介质吩噻嗪(PT)和酶葡萄糖脱氢酶(GDH)的多层膜的安培生物传感器的新型制造方法。电化学电极的结构依次由溅射金,乙腈PPF,PT,GDH和乙腈PPF(表示为PPF / GDH / PT / CNT / PPF / Au)组成。沉积在Au上的第一个PPF充当选择性渗透膜和CNT层形成的支架。直接沉积在GDH上的第二个PPF作为固定酶的基质。为了促进CNT层和GDH之间的电化学连通,用氮等离子体处理CNT。电子传递介体PT作为介体发挥作用,其中由酶反应引起的电子传输到电极。介体与CNT之间的协同作用在降低操作电位和增强灵敏度(电流)方面提供了好处。优化的葡萄糖生物传感器在+ 0.2V时相对于Ag / AgCl的灵敏度为5.1±0.9μAmM〜(-1)cm〜(-2),线性动态范围为4.9-19mM,响应时间为5±1s。与常规的湿法化学工艺不兼​​容于批量生产技术,这种干法化学工艺具有巨大的潜力,可以实现高通量的生物电子设备生产。此外,这些装置可以作为有用,有用或必不可少的工具应用于细胞生物学功能领域并扩展。

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