A Comparison of Different Strategies for The Modification of Quartz Tuning Forks Based Mass Sensitive Sensors Using Natural Melanin Nanoparticles

Derya Demir, Sude Gundogdu, Seyda Kilic, Tugce Kartallioglu, Yusuf Alkan, Engin Baysoy, Gizem Kaleli Can
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引用次数: 4

Abstract

Quartz tuning fork (QTF) is a measurement tool that is gaining attraction nowadays due to remarkable features like their low cost, stable resonance frequency, and considerably low working frequency. However how to functionalize a QTF as a chemical or a physical sensor is still an important problem that needs to be solved for a widespread usage. This paper describes approaches to functionalize QTFs by utilizing melanin nanoparticles (MNP) in order to create a recognition layer for the creation of a target specific mass sensitive biosensor. In order to achieve this aim, electroplating and dip coating methods are chosen for their relative ease of use and cheap operating costs for the purpose of being industry-friendly and reproducible as a product for field applications. Moreover a comparative study on chemical etching of QTFs was conducted with the goal of improving MNP attachment during dip coating process.
天然黑色素纳米粒子修饰石英音叉质敏传感器的不同策略比较
石英音叉(QTF)是一种测量工具,由于其显著的特点,如低成本,稳定的谐振频率,以及相当低的工作频率越来越吸引人。然而,如何将QTF功能化为化学或物理传感器仍然是一个需要广泛应用的重要问题。本文描述了利用黑色素纳米颗粒(MNP)功能化qtf的方法,以便为创建目标特异性质量敏感生物传感器创建识别层。为了实现这一目标,选择电镀和浸渍涂层方法,因为它们相对易于使用和便宜的操作成本,目的是工业友好和可复制作为现场应用的产品。为了提高浸涂过程中MNP的附着力,对qtf的化学蚀刻进行了对比研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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