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DEVELOPMENT OF PRESSURE SENSITIVE MOLECULAR FILM SUITABLE FOR MEASUREMENT IN HIGH KNUDSEN NUMBER FLOWS

机译:适用于高努数流测量的压力敏感分子膜的开发

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摘要

Pressure sensitive paint (PSP) technique is based on the interaction of oxygen molecules with luminescent molecules, and it seems suitable for analyses of high Knudsen number flows which require diagnostic tools in the molecular level. However, application of the PSP technique to micro-devices is still very difficult because of the thickness of PSP layers of the order of microns and the aggregation of luminescent molecules caused by the "painting" methods. To resolve the problems of ordinary PSPs mentioned above, we adopt the Langmuir-Blodgett (LB) method to fabricate pressure sensitive molecular films (PSMFs) having nanometer order thickness. The fundamental properties of the PSMFs such as the pressure sensitivity and the surface roughness are examined, to evaluate the feasibility of the PSMF technique for pressure measurement around micro-devices. A PSMF based on palladium (Ⅱ) mesoporphyrin Ⅸ shows high pressure sensitivity in low pressure regime, while a PSMF based on platinum (Ⅱ) mesoporphyrin Ⅸ is optimum for atmospheric pressure. It is also clarified that the PSMFs do not degrade the roughness of solid surfaces. The results indicate the feasibility of the PSMF technique for pressure measurement in high Knudsen number flows such as micro flows.
机译:压敏涂料(PSP)技术基于氧分子与发光分子的相互作用,似乎适用于需要分子水平诊断工具的高克努森数流分析。但是,由于PSP层的厚度约为微米级,并且“喷涂”方法导致发光分子聚集,因此将PSP技术应用于微型设备仍然非常困难。为了解决上述普通PSP的问题,我们采用Langmuir-Blodgett(LB)方法来制造具有纳米级厚度的压敏分子膜(PSMF)。检查了PSMF的基本特性,例如压力灵敏度和表面粗糙度,以评估PSMF技术在微型设备周围进行压力测量的可行性。基于钯(Ⅱ)中卟啉Ⅸ的PSMF在低压状态下显示出高压力敏感性,而基于铂(Ⅱ)中卟啉Ⅸ的PSMF最适合大气压。还需要说明的是,PSMF不会降低固体表面的粗糙度。结果表明PSMF技术在高努数流量(如微流量)中进行压力测量的可行性。

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