首页> 外国专利> Quantitative biopolymer detecting system using monolithic piezoelectric cantilever by resonant frequency shift, method for fabricating the same system and method for detecting biopolymer quantitatively using the same system

Quantitative biopolymer detecting system using monolithic piezoelectric cantilever by resonant frequency shift, method for fabricating the same system and method for detecting biopolymer quantitatively using the same system

机译:使用整体式压电悬臂通过共振频移的定量生物聚合物检测系统,其制造方法以及使用该系统定量检测生物聚合物的方法

摘要

A method for detecting a small amount of biopolymer by using resonant frequency shift of PZT monolithic cantilever system using a cantilever includes: an infinitesimal fluid transfer system having an inlet for allowing a reactant to be injected therethrough and an infinitesimal introduction channel for connecting the inlet and a reaction chamber; and a cantilever sensor installed in the reaction chamber and having a cantilever with one end fixed at a substrate, a piezoelectric capacitor for self-sensing and actuating on at least one side of an upper surface and a lower surface of the cantilever including a piezoelectric film, a lower electrode formed at a lower surface of the piezoelectric film and an upper electrode formed at an upper surface of the piezoelectric film, an electric pad for applying electricity to the lower electrode and the upper electrode, and a molecular recognition layer formed at at least one surface of the cantilever and so as to interact to an target biopolymer. Actuating and sensing can be applied to the cantilever using monolithic PZT cantilever without using an additional external actuator, so that the size of the cantilever sensor can be considerably reduced and coupled to a fine fluid transfer system to measure a very small amount of biopolymer.
机译:一种通过利用使用悬臂的PZT整体悬臂系统的共振频率偏移来检测少量生物聚合物的方法,该方法包括:无限小流体传输系统,其具有用于允许通过其注入反应物的入口以及用于连接所述入口和容器的无限小引入通道。反应室;一种悬臂传感器,其安装在反应室中,并且悬臂的一端固定在基板上;压电电容器,其在包括压电膜的悬臂的上表面和下表面的至少一侧上进行自感应和致动。形成在压电体膜的下表面的下部电极和形成在压电体膜的上表面的上部电极,用于对下部电极和上部电极通电的电焊垫,以及在其上形成的分子识别层。悬臂的至少一个表面并与目标生物聚合物相互作用。可以使用整体式PZT悬臂在不使用额外的外部致动器的情况下对悬臂进行致动和传感,因此可以显着减小悬臂传感器的尺寸并将其连接到精细的流体传输系统上,以测量非常少量的生物聚合物。

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