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Enhancing the Sensitivity of Nanoplasmonic Thin Films for Ethanol Vapor Detection

机译:增强用于乙醇蒸汽检测的纳米等离子体薄膜的灵敏度

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摘要

Nanoplasmonic thin films, composed of noble metal nanoparticles (gold) embedded in an oxide matrix, have been a subject of considerable interest for Localized Surface Plasmon Resonance (LSPR) sensing. Ethanol is one of the promising materials for fuel cells, and there is an urgent need of a new generation of safe optical sensors for its detection. In this work, we propose the development of sensitive plasmonic platforms to detect molecular analytes (ethanol) through changes of the LSPR band. The thin films were deposited by sputtering followed by a heat treatment to promote the growth of the gold nanoparticles. To enhance the sensitivity of the thin films and the signal-to-noise ratio (SNR) of the transmittance–LSPR sensing system, physical plasma etching was used, resulting in a six-fold increase of the exposed gold nanoparticle area. The transmittance signal at the LSPR peak position increased nine-fold after plasma treatment, and the quality of the signal increased six times (SNR up to 16.5). The optimized thin films seem to be promising candidates to be used for ethanol vapor detection. This conclusion is based not only on the current sensitivity response but also on its enhancement resulting from the optimization routines of thin films’ architectures, which are still under investigation.
机译:由嵌入氧化物基质中的贵金属纳米颗粒(金)组成的纳米等离子体薄膜已经成为局域表面等离振子共振(LSPR)传感的重要课题。乙醇是用于燃料电池的有前途的材料之一,并且迫切需要用于其检测的新一代安全光学传感器。在这项工作中,我们建议开发灵敏的等离子体平台,以通过LSPR谱带的变化检测分子分析物(乙醇)。通过溅射沉积薄膜,然后进行热处理以促进金纳米颗粒的生长。为了提高薄膜的灵敏度和透射率-LSPR传感系统的信噪比(SNR),使用了物理等离子体蚀刻,从而使暴露的金纳米颗粒面积增加了六倍。等离子体处理后,LSPR峰值位置的透射信号增加了9倍,信号质量增加了6倍(SNR高达16.5)。优化的薄膜似乎有望用于乙醇蒸气检测。该结论不仅基于当前的灵敏度响应,还基于薄膜结构的优化例程所产生的增强效果,目前仍在研究中。

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