Hydrophobic alumina thin films formed by the electrostatic self-assembly monolayer process for the fabrication of optical fiber gas sensors

F. Arregui, I. Matías, K. Cooper, R. Claus
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引用次数: 4

Abstract

Aluminum oxide thin films were formed by the electrostatic self-assembled monolayer (ESAM) method on optical fibers for the fabrication of gas sensors. Negligible sensitivity with humidity was achieved after thermal curing a variation of 1.5 dB at 1550 nm was achieved with the presence of ethanol. The coatings are also sensitive to other organic compound, this apparent lack of selectivity can be overcome with wavelength ratiometric techniques because the spectral response to these gases is different for each gas and this open the possibility of the simultaneous detection of several compounds. This is the first time that the ESAM method have been applied for the deposition of alumina films on optical fibers.
采用静电自组装单层工艺制备疏水氧化铝薄膜,用于制造光纤气体传感器
采用静电自组装单层(ESAM)法在光纤表面形成氧化铝薄膜,用于气体传感器的制备。热固化后,对湿度的灵敏度可以忽略不计,在1550 nm处乙醇存在时,灵敏度变化为1.5 dB。涂层对其他有机化合物也很敏感,这种明显的选择性缺乏可以用波长比技术克服,因为每种气体对这些气体的光谱响应是不同的,这开辟了同时检测几种化合物的可能性。这是ESAM方法首次应用于氧化铝薄膜在光纤上的沉积。
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