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Preparation of Silicon Nanowire Field-effect Transistor for Chemical and Biosensing Applications

机译:用于化学和生物传感应用的硅纳米线场效应晶体管的制备

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摘要

Surveillance using biomarkers is critical for the early detection, rapid intervention, and reduction in the incidence of diseases. In this study, we describe the preparation of polycrystalline silicon nanowire field-effect transistors (pSNWFETs) that serve as biosensing devices for biomarker detection. A protocol for chemical and biomolecular sensing by using pSNWFETs is presented. The pSNWFET device was demonstrated to be a promising transducer for real-time, label-free, and ultra-high-sensitivity biosensing applications. The source/drain channel conductivity of a pSNWFET is sensitive to changes in the environment around its silicon nanowire (SNW) surface. Thus, by immobilizing probes on the SNW surface, the pSNWFET can be used to detect various biotargets ranging from small molecules (dopamine) to macromolecules (DNA and proteins). Immobilizing a bioprobe on the SNW surface, which is a multistep procedure, is vital for determining the specificity of the biosensor. It is essential that every step of the immobilization procedure is correctly performed. We verified surface modifications by directly observing the shift in the electric properties of the pSNWFET following each modification step. Additionally, X-ray photoelectron spectroscopy was used to examine the surface composition following each modification. Finally, we demonstrated DNA sensing on the pSNWFET. This protocol provides step-by-step procedures for verifying bioprobe immobilization and subsequent DNA biosensing application.
机译:使用生物标记进行监视对于及早发现,快速干预和减少疾病的发病率至关重要。在这项研究中,我们描述了用作生物标记检测生物传感设备的多晶硅纳米线场效应晶体管(pSNWFET)的制备。提出了使用pSNWFET进行化学和生物分子传感的协议。已证明pSNWFET器件是实时,无标签和超高灵敏度生物传感应用的有希望的换能器。 pSNWFET的源/漏沟道电导率对其硅纳米线(SNW)表面周围的环境变化敏感。因此,通过将探针固定在SNW表面上,pSNWFET可用于检测从小分子(多巴胺)到大分子(DNA和蛋白质)的各种生物靶标。将生物探针固定在SNW表面上是一个多步骤过程,对于确定生物传感器的特异性至关重要。正确执行固定程序的每个步骤至关重要。我们通过直接观察每个修饰步骤后pSNWFET的电性能变化来验证表面修饰。另外,X-射线光电子能谱用于检查每次修饰后的表面组成。最后,我们在pSNWFET上演示了DNA传感。该协议提供了验证生物探针固定和后续DNA生物传感应用的分步过程。

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