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Large current difference in Au-coated vertical silicon nanowire electrode array with functionalization of peptides

机译:具有肽功能化的Au涂层垂直硅纳米线电极阵列中的大电流差

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摘要

Au-coated vertical silicon nanowire electrode array (VSNEA) was fabricated using a combination of bottom-up and top-down approaches by chemical vapor deposition and complementary metal-oxide-semiconductor process for biomolecule sensing. To verify the feasibility for the detection of biomolecules, Au-coated VSNEA was functionalized using peptides having a fluorescent probe. Cyclic voltammograms of the peptide-functionalized Au-coated VSNEA show a steady-state electrochemical current behavior. Because of the critically small dimension and vertically aligned nature of VSNEA, the current density of Au-coated VSNEA was dramatically higher than that of Au film electrodes. Au-coated VSNEA further showed a large current difference with and without peptides that was nine times more than that of Au film electrodes. These results indicate that Au-coated VSENA is highly effective device to detect peptides compared to conventional thin-film electrodes. Au-coated VSNEA can also be used as a divergent biosensor platform in many applications.
机译:镀金的垂直硅纳米线电极阵列(VSNEA)是通过化学气相沉积和自上而下和自上而下的方法相结合,通过化学气相沉积和互补金属氧化物半导体工艺进行生物分子传感而制成的。为了验证检测生物分子的可行性,使用具有荧光探针的肽对金包被的VSNEA进行了功能化。肽官能化的金包被的VSNEA的循环伏安图显示了稳态电化学电流行为。由于VSNEA的尺寸非常小且垂直排列,因此镀金的VSNEA的电流密度显着高于金膜电极的电流密度。在有和没有肽的情况下,镀金的VSNEA进一步显示出较大的电流差,这是金膜电极的九倍。这些结果表明,与传统的薄膜电极相比,Au涂层的VSENA是检测肽的高效装置。镀金的VSNEA还可在许多应用中用作分散的生物传感器平台。

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