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Influence of surface microstructure on optical response of ruthenium-porphyrins thin films gas sensor

机译:表面微观结构对钌卟啉薄膜气体传感器光学响应的​​影响

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摘要

This paper reports an attempt to improve the response of a metalloporphyrin Langmuir-Blodgett films, n-tetraphenyl porphine ruthenium (II) carbonyl, towards several vapor samples by means of surface microstructure modi. cation. Four different surface microstructures were prepared by annealing the thin films samples in air at three different temperatures; 50, 100 and 150 degreesC, for one hour. Three types of vapor samples with different physico-chemical properties, namely saturated vapor of methanol, ethanol and 2-propanol in 15 l/min of air flow, were used. The sensing sensitivity was based on the change in the optical absorption of the film upon exposure towards the gas samples that was measured at a particular wavelength, i.e., 514 nm, of the light source. It was observed that the response of the thin films was influenced by its surface microstructure, which the smoother the surface the higher the response is. The correlation between the microstructure of the films surface and its gas sensing property will be discussed.
机译:本文报道了一种尝试通过表面微观结构改进金属卟啉Langmuir-Blodgett膜(正四苯基卟啉钌(II)羰基)对几种蒸气样品的响应的尝试。阳离子。通过在空气中在三个不同温度下对薄膜样品进行退火来制备四个不同的表面微观结构。在50、100和150摄氏度下加热一小时。使用三种具有不同理化性质的蒸气样品,即空气流量为15 l / min的甲醇,乙醇和2-丙醇的饱和蒸气。感测灵敏度是基于在暴露于气体样品时薄膜的光吸收变化,该变化是在光源的特定波长即514nm处测得的。观察到薄膜的响应受其表面微观结构的影响,表面越光滑,响应越高。将讨论膜表面的微观结构与其气敏特性之间的相关性。

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