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基于时域有限差分法的用于表面等离子体共振传感器的金属基底上石墨烯的研究。

Investigation of graphene-on-metal substrates for SPR-based sensor using finite-difference time domain.

作者信息

Said Fairus Atida, Menon Pulliyaseri Susthitha, Rajendran Venkatachalam, Shaari Sahbudin, Majlis Burhanuddin Y

机构信息

Institute of Microengineering and Nanoelectronics (IMEN), National University of Malaysia (UKM), 43600 UKM Bangi, Selangor, Malaysia.

Centre for Nano Science and Technology, K. S. Rangasamy College of Technology, K. S. R. Kalvi Nagar 637 215, Tamil Nadu, India.

出版信息

IET Nanobiotechnol. 2017 Dec;11(8):981-986. doi: 10.1049/iet-nbt.2017.0051.

Abstract

In this study, the authors investigated the effects of a single layer graphene as a coating layer on top of metal thin films such as silver, gold, aluminum and copper using finite-difference time domain method. To enhance the resolution of surface plasmon resonance (SPR) sensor, it is necessary to increase the SPR reflectivity and decrease the full-width-half maximum (FWHM) of the SPR curve so that there is minimum uncertainty in the determination of the resonance dip. Numerical data was verified with analytical and experimental data where all the data were in good agreement with resonance angle differing in <10% due to noise present in components such as humidity and temperature. In further analysis, reflectivity and FWHM were compared among four types of metal with various thin film thicknesses where graphene was applied on top of the metal layers, and data was compared against pure conventional metal thin films. A 60 nm-thick Au thin film results in higher performance with reflectivity of 92.4% and FWHM of 0.88° whereas single layer graphene-on-60 nm-thick Au gave reflectivity of 91.7% and FWHM of 1.32°. However, a graphene-on-40 nm-thick Ag also gave good performance with narrower FWHM of 0.88° and reflection spectra of 89.2%.

摘要

在本研究中,作者使用时域有限差分法研究了单层石墨烯作为涂层覆盖在银、金、铝和铜等金属薄膜上的效果。为提高表面等离子体共振(SPR)传感器的分辨率,有必要提高SPR反射率并减小SPR曲线的半高宽(FWHM),以便在确定共振峰时具有最小的不确定性。数值数据通过分析数据和实验数据进行了验证,由于湿度和温度等组件中存在的噪声,所有数据与共振角的差异在<10%以内,吻合良好。在进一步的分析中,比较了在金属层顶部应用石墨烯的四种类型金属在不同薄膜厚度下的反射率和半高宽,并将数据与纯传统金属薄膜进行了比较。60nm厚的金薄膜表现出更高的性能,反射率为92.4%,半高宽为0.88°,而60nm厚金薄膜上的单层石墨烯反射率为91.7%,半高宽为1.32°。然而,40nm厚银薄膜上的石墨烯也表现出良好的性能,半高宽更窄,为0.88°,反射光谱为89.2%。

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