首页> 外文会议>IEEE Sensors >Au-(Y_(2)O_(3))_(X)(ZrO_(2))_(1-X) Thin Films for High Temperature Gas Detection via Changes in Optical Absorption: Interfacial Influences on Metallic Nanoparticle Optical Properties
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Au-(Y_(2)O_(3))_(X)(ZrO_(2))_(1-X) Thin Films for High Temperature Gas Detection via Changes in Optical Absorption: Interfacial Influences on Metallic Nanoparticle Optical Properties

机译:AU-(Y_(2)O_(3))_(x)(ZrO_(2))_(1-x)薄膜,用于高温气体检测通过光学吸收的变化:对金属纳米颗粒光学性质的界面影响

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Increased dampening of the surface plasmon resonance (SPR) band of Au nanoparticles embedded in yttria stabilized zirconia (YSZ) has been observed for Au-YSZ thin films at 500 deg C under increasing O_(2) concentrations in N_(2). It has been proposed that this broadening in the SPR band is due to an adsorbate induced dampening of the SPR band, which was initially observed using gas aggregation techniques on Ag nanoparticles, and can be observed at elevated temperatures by simply changing the gas environment of Au-YSZ films. We have developed a model to describe the changes we see in the SPR band broadening utilizing theoretical models developed by Persson [1] and Pinchuk et al. [2] Our model is in agreement with experimental results within a factor of three and shows promise in furthering the understanding of the optical properties possessed by noble metal nanoparticles embedded in a metal oxide matrix.
机译:在N_(2)中的增加的O_(2)浓度下,已经在500℃的Au-YSZ薄膜下观察到嵌入在ytTria稳定的氧化锆(YSZ)的Au纳米颗粒的表面等离子体共振(SPR)带的增加。已经提出,SPR带中的这种展宽是由于SPR频带的吸附诱导抑制,其最初使用Ag纳米颗粒上的气体聚集技术观察,并且通过简单地改变Au的气体环境,可以在升高的温度下观察到。 -ysz电影。我们开发了一种模型来描述我们在SCR频段扩大中看到的变化,利用Persson [1]和Pinchuk等人开发的理论模型。 [2]我们的模型与实验结果一致,在三个倍数内,展示了进一步理解嵌入金属氧化物基质中的贵金属纳米颗粒所拥有的光学性质。

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