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Optical Index Prism Sensitivity of Surface Plasmon Resonance Imaging in Gas Phase: Experiment versus Theory

机译:光学指数棱镜棱镜敏感性气相中的谐振成像:实验与理论

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Recent advances in SPR imaging detection in the gas phase have led to the development of an optoelectronic nose (opto-eN) requiring the need for optical sensitivity characterization of such devices. Understanding the optical contributions will have an implicit relevance to sensitivity enhancement of SPR imaging in the gas phase valuable to improving the performance of opto-eN and potentially opening new applications as gas sensors. In this paper, we analyzed the optical contributions to the sensitivity of the SPR imaging prisms and potential insights into their contributing factors. We established a characterization method for the SPR prism sensitivity that is independent of the carrier gas considered. Then, by using this sensitivity parameter, the influence of two different kinds of adhesive layers, Cr and Ti, of the gold coated-prisms was studied. Furthermore, we considered a theoretical model to rationalize our experimental results, which demonstrated the relevance of surface topography to the optical index sensitivity. Those surface topographies were characterized experimentally and were implemented in the model free from any additional fitting parameters using a modified Maxwell-Garnett theory. Finally, the model was shown to predictively assess the experimentally measured effects of temperature on the prism sensitivity.
机译:气相中的SPR成像检测的最新进展导致了需要需要对这种装置的光学灵敏度表征的光电子鼻(光电鼻)的开发。理解光学贡献将隐含与SPR成像在气相中的SPR成像的灵敏度的相关性,以提高光学en的性能和潜在地打开新应用作为气体传感器。在本文中,我们分析了SPR成像棱镜的灵敏度和潜在见解其贡献因素的光学贡献。我们建立了用于SPR棱镜敏感性的特征方法,其独立于考虑的载气。然后,通过使用这种敏感性参数,研究了两种不同种类的粘合剂层,Cr和Ti的影响,金涂层棱镜的影响。此外,我们考虑了理论模型,以合理化我们的实验结果,这证明了表面形貌与光学指标敏感性的相关性。那些表面拓扑在实验上表征,并在模型中在没有任何额外的拟合参数的模型中使用,使用改进的Maxwell-Garnett理论。最后,示出了该模型可预测地评估温度的实验测量对棱镜敏感性的影响。

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