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Vapor-phase deposition-based self-assembled monolayer for an electrochemical sensing platform

机译:用于电化学传感平台的气相沉积基自组装单层

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摘要

Vapor-phase deposition was investigated to prepare electrochemically stable self-assembled monolayers (SAMs) since the promising coating technology can improve the surface functionality for electrochemical biosensors. In our experiments, mercaptopropionic acid (MPA)–Au SAMs in vapor-phase deposition were compared with those in the liquid-phase process, and their electrochemical properties were interrogated by measuring cyclic voltammetry and impedance spectroscopy. As a result, Au–MPA SAMs prepared in a vapor-phase process exhibited much higher electrochemical stability than those in a liquid-phase process. Furthermore, parameters in the vapor–phase deposition process were optimized for reproducible impedance signals, and the as-prepared Au–MPA SAMs under the conditions were adopted for detecting target IgE. It would pave the way for the development of a highly reproducible electrochemical bio-sensing platform.
机译:研究了气相沉积以制备电化学稳定的自组装单层(SAMS),因为有前景的涂层技术可以改善电化学生物传感器的表面官能团。在我们的实验中,将气相沉积中的巯基丙酸(MPa)-aU SAM与液相过程中的溶液进行比较,并通过测量循环伏安法和阻抗光谱来询问其电化学性质。结果,在气相过程中制备的Au-MPA Sam表现出比液相过程中的电化学稳定性更高。此外,对蒸汽相沉积过程中的参数进行了优化以进行可再现的阻抗信号,并且采用根据条件的制备的Au-MPA SAM用于检测靶IgE。它会为开发高度可重复的电化学生物传感平台铺平道路。

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