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RF sputtered amorphous chalcogenide thin films for surface enhanced infrared absorption spectroscopy

机译:用于表面增强红外吸收光谱的RF溅射非晶硫族化物薄膜

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The primary objective of this study is the development of transparent thin film materials in the IR enabling strong infrared absorption of organic compounds in the vicinity of metal nanoparticles by the surface plasmon effect. For developing these optical micro-sensors, hetero-structures combining gold nanoparticles and chalcogenide planar waveguides are fabricated and adequately characterized. Single As2S3 and Ge25Sb10Se65 amorphous chalcogenide thin films are prepared by radio-frequency magnetron sputtering. For the fabrication of gold nanoparticles on a chalcogenide planar waveguide, direct current sputtering is employed. Fabricated single layers or hetero-structures are characterized using various techniques to investigate the influence of deposition parameters. The nanoparticles of gold are functionalized by a self-assembled monolayer of 4-nitrothiophenol. Finally, the surface enhanced infrared absorption spectra of 4-nitrothiophenol self-assembled on fabricated Au/Ge-Sb-Se thin films hetero-structures are measured and analyzed. This optical component presents a ~24 enhancement factor for the detection of NO2 symmetric stretching vibration band of 4-nitrothiophenol at 1336 cm−1.
机译:这项研究的主要目的是开发红外中的透明薄膜材料,从而通过表面等离激元效应使金属纳米颗粒附近的有机化合物强烈吸收红外光。为了开发这些光学微传感器,制造了金纳米颗粒和硫族化物平面波导相结合的异质结构并对其进行了适当的表征。通过射频磁控溅射制备As2S3和Ge25Sb10Se65非晶硫族化物薄膜。为了在硫族化物平面波导上制造金纳米颗粒,采用直流溅射。使用各种技术对制造的单层或异质结构进行表征,以研究沉积参数的影响。金的纳米颗粒通过4-硝基硫代苯酚的自组装单层功能化。最后,测量并分析了自组装在Au / Ge-Sb-Se薄膜异质结构上自组装的4-硝基硫酚的表面增强红外吸收光谱。此光学组件为〜1336 cm-1处的4-硝基硫酚的NO2对称拉伸振动带检测提供了〜24的增强因子。

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