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首页> 外文期刊>American Journal of Optics and Photonics >Investigation of Sensors Based on ITO Nanofilms in SPR-Devices
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Investigation of Sensors Based on ITO Nanofilms in SPR-Devices

机译:SPR器件中基于ITO纳米膜的传感器的研究

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Devices based on surface plasmon resonance (SPR) are used to determine the refraction index (RI) of liquids and gases. In these cases, as a sensitive element (SE), they use precious materials. It is also known that RI of an investigated substance (analyte) depends on temperature, which brings in some errors into results of measurements. The existing construction solutions for controlling and adjusting the analyte temperature possess a number of deficiencies, namely: high inertness and consumption power. The aim of this work was to study the possibility of using ITO films (In_2O_3-SnO) as SE and thin-film heaters in SPR devices to enhance their accuracy. For the first time, excitation of SPR by using the wavelength 650 nm in ITO films has been proved experimentally. It has been also shown that using the heaters based on ITO films reduces the error of measuring the analyte RI by 1.8 times and the consumed power - by 2.3 times as compared with the existing heaters of the resistive type that are used now in SPR devices.
机译:基于表面等离子体激元共振(SPR)的设备用于确定液体和气体的折射率(RI)。在这些情况下,它们使用宝贵的材料作为敏感元素(SE)。还已知被调查物质(分析物)的RI取决于温度,这会在测量结果中带来一些误差。用于控制和调节分析物温度的现有构造解决方案具有许多缺陷,即:高惰性和消耗功率。这项工作的目的是研究在SPR器件中使用ITO膜(In_2O_3-SnO)作为SE和薄膜加热器的可能性,以提高其准确性。首次通过实验证明了通过在ITO膜中使用650 nm波长激发SPR。还已经显示,与目前在SPR装置中使用的电阻型现有加热器相比,使用基于ITO膜的加热器将测量分析物RI的误差降低了1.8倍,将功耗降低了2.3倍。

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