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Combined plasmonic Au-nanoparticle and conducting metal oxide high-temperature optical sensing with LSTO

机译:结合电浆Au-nanoparticle和开展金属氧化物高温光学传感这

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摘要

Fiber optic sensor technology offers several advantages for harsh-environment applications. However, the development of optical gas sensing layers that are stable under harsh environmental conditions is an ongoing research challenge. In this work, electronically conducting metal oxide lanthanum-doped strontium titanate (LSTO) films embedded with gold nanoparticles are examined as a sensing layer for application in reducing gas flows at high temperature (600-800 degrees C). A strong localized surface plasmon resonance (LSPR) based response to hydrogen is demonstrated in the visible region of the spectrum, while a Drude free electron-based response is observed in the near-IR. Characteristics of these responses are studied both on planar glass substrates and on silica fibers. Charge transfer between the oxide film and the gold nanoparticles is explored as a possible mechanism governing the Au LSPR response and is considered in terms of the corresponding properties of the conducting metal oxide-based matrix phase. Principal component analysis is applied to the combined plasmonic and free-carrier based response over a range of temperatures and hydrogen concentrations. It is demonstrated that the combined visible and near-IR response of these films provides improved versatility for multiwavelength interrogation, as well as improved discrimination of important process parameters (concentration and temperature) through application of multivariate analysis techniques.
机译:光纤传感器技术提供了几个恶劣的环境应用程序的优点。然而,光纤气体传感的发展恶劣环境下稳定层条件是一个正在进行的研究的挑战。这个工作,导电的金属氧化物lanthanum-doped钛酸锶(LSTO)电影与金纳米粒子嵌入检查在减少气体传感层的应用程序流在高温(600 - 800摄氏度)。强烈的局部表面等离子体共振(LSPR)基于氢反应中显示可见区域的光谱,而柯克自由电子的反应是观察到的近红外线。研究了在平面玻璃基板石英纤维。电影和金纳米粒子是探索可能机制管理非盟LSPR响应而且被认为是相应的的属性进行金属氧化物矩阵的阶段。应用于电浆和基于自由载流子的响应的范围温度和氢浓度。证明了结合可见光和近红外线的反应这些电影提供了改善多波长审讯多才多艺,也提高了重要的歧视工艺参数(浓度和通过应用多元温度)分析技术。

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