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Fabrication and bio-functionalization of tetrahedral amorphous carbon thin films for bio sensor applications

机译:用于生物传感器的四面体非晶碳薄膜的制备和生物功能化

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摘要

Tetrahedral amorphous carbon (ta-C) thin films are a promising material for use as biocompatible interfaces in applications such as in-vivo biosensors. However, the functionalization of ta-C film surface, which is a prerequisite for biosensors, remains a big challenge due to its chemical inertness. We have investigated the bio-functionalization of ta-C films fabricated under specific physical conditions through the covalent attachment of functional biomolecular probes of peptide nucleic acid (PNA) to ta-C films, and the effect of fabrication conditions on the bio-functionalization. The study showed that the functional bimolecular probes such as protected long-chain w-unsaturated amine (TFAAD) can be covalently attached to the ta-C surface through a well-defined structure. With the given fabrication process, electrochemical methods can be applied to the detection of biomolecular interaction, which establishes the basis for the development of stable, label-free biosensors.
机译:四面体无定形碳(ta-C)薄膜是一种有前途的材料,可用作体内生物传感器等应用中的生物相容性界面。然而,由于其化学惰性,ta-C膜表面的功能化(这是生物传感器的先决条件)仍然是一个巨大的挑战。我们已经研究了通过将特定功能的肽核酸(PNA)生物分子探针共价附着到ta-C膜上而在特定物理条件下制备的ta-C膜的生物功能化,以及制备条件对生物功能化的影响。研究表明,功能性双分子探针(例如受保护的长链w-不饱和胺(TFAAD))可以通过定义明确的结构共价连接至ta-C表面。在给定的制造过程中,电化学方法可以应用于生物分子相互作用的检测,这为开发稳定,无标记的生物传感器奠定了基础。

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