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在电解液中运行的背栅喷雾沉积碳纳米管薄膜晶体管:对未来生物传感应用的评估

Back-gated spray-deposited carbon nanotube thin film transistors operated in electrolytic solutions: an assessment towards future biosensing applications.

作者信息

Münzer A M, Heimgreiter M, Melzer K, Weise A, Fabel B, Abdellah A, Lugli P, Scarpa G

机构信息

Technische Universität München, Institute for Nanoelectronics, Munich, Germany.

出版信息

J Mater Chem B. 2013 Aug 21;1(31):3797-3802. doi: 10.1039/c3tb20170h. Epub 2013 May 13.

Abstract

We report on back-gated carbon nanotube (CNT) thin-film transistors (CNTFETs) and their performance in electrolytic solutions to assess their suitability for future application as biosensors. Spray-deposited CNT networks were used as the sensitive active layer which offers the opportunity for integration on flexible sensing platforms at low-cost. We characterized the transistors' behavior in electrolytes by analyzing the response to different KCl solutions and buffers over a wide pH range. We observed a linear response of the drain current upon changing the pH in low molarity buffers and obtained an exponential dependence on the salt concentration of the electrolyte. These responses can be attributed to electrostatic gating effects that go along with shifts in the threshold voltage. Even though a lot of effort has been put into understanding the biosensing mechanism a detailed theory is still missing. Back-gated CNTFETs operated in electrolytic solutions can be a further tool to investigate and clarify the existing unsolved phenomena.

摘要

我们报道了背栅碳纳米管(CNT)薄膜晶体管(CNTFET)及其在电解液中的性能,以评估其作为未来生物传感器应用的适用性。喷雾沉积的碳纳米管网络被用作敏感有源层,这为低成本集成在柔性传感平台上提供了机会。我们通过分析在很宽的pH范围内对不同KCl溶液和缓冲液的响应,表征了晶体管在电解液中的行为。我们观察到在低摩尔浓度缓冲液中改变pH时漏极电流呈线性响应,并获得了对电解液盐浓度的指数依赖性。这些响应可归因于与阈值电压偏移相关的静电门控效应。尽管在理解生物传感机制方面已经付出了很多努力,但仍缺少详细的理论。在电解液中运行的背栅CNTFET可以成为研究和阐明现有未解决现象的进一步工具。

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