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Quartz Crystal Microbalance with Integrated Surface Plasmon Grating Coupler

机译:集成表面等离子光栅耦合器的石英晶体微天平

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We have integrated a surface plasmon grating coupler into a quartz crystal microbalance (QCM) for studying surface association/dissociation reactions. In the integrated system only QCM measurement is needed to record both the optical and the acoustic signals in the same association/dissociation reaction. This integration considerably simplifies a conventional combination instrument of a grating-coupled surface plasmon resonance (SPR) spectrometer and a quartz crystal microbalance by eliminating a number of SPR components. Moreover, in the integrated system detection of the light reflections is not needed by which one bypasses the interference problem caused by two coherent light reflections off the glass window used to seal the fluid sample and off the sensor surface. The utility of the integrated system is demonstrated using a layer-by-layer polyelectrolyte multilayer deposition protocol, in which the complete features of a conventional grating-coupled SPR/QCM combination instrument are retained, including detection of optical and acoustic changes, as well as monitoring of adsorption kinetics.
机译:我们已将表面等离子体激元光栅耦合器集成到石英晶体微量天平(QCM)中,用于研究表面缔合/解离反应。在集成系统中,只需要QCM测量就可以在相同的缔合/离解反应中记录光信号和声信号。通过消除许多SPR组件,这种集成大大简化了光栅耦合表面等离子体共振(SPR)光谱仪和石英晶体微天平的常规组合仪器。此外,在集成系统中,不需要检测光反射,通过该检测可以绕过用于密封流体样本的玻璃窗和传感器表面的两个相干光反射所引起的干扰问题。使用逐层聚电解质多层沉积协议展示了集成系统的实用性,该协议保留了传统的光栅耦合SPR / QCM组合仪器的完整功能,包括检测光学和声学变化以及监测吸附动力学。

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