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Development of pressure sensitive molecular film applicable to pressure measurement for high Knudsen number flows

机译:开发适用于高努数流量压力测量的压敏分子膜

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摘要

Experimental analyses of thermo-fluid phenomena of micro- and nano-flows with high Knudsen number need the measurement techniques based on interaction of atoms or molecules with photons. The pressure-sensitive paint (PSP) technique has potential as a diagnostic tool for pressure measurement in the high Knudsen number regime because it works as a so-called “molecular sensor”. However, application of PSP to micro devices is very difficult because the conventional PSP is too thick owing to the use of polymer binder and does not have sufficient spatial resolution for pressure measurement of micro-flows. In this study, we have adopted the Langmuir-Blodgett (LB) technique to fabricate pressure sensitive molecular films (PSMFs) using Pd(II) Octaethylporphine (PdOEP) and Pd(II) Mesoporphyrin IX (PdMP) to resolve ordinary PSPs problems, and have tested these PSMFs to evaluate the feasibility of the pressure measurement around micro-devices. It is clarified that the PSMF composed of PdMP has higher sensitivity than that of PdOEP. Since it is also considered that the sensitivity of PSMFs can be increased by introducing arachidic acid (AA) as spacer molecules of LB films to prevent the aggregation of luminescent molecules, we have produced PSMFs with several molar ratio of PdMP to AA. At the most suitable ratio, the PSMF has high sensitivity in the low pressure region with high Knudsen number, even if the amount of the luminescent molecules in the PSMF layer is smaller than that in conventional PSPs. This result indicates that the PSMF is feasible to measure the pressure in high Knudsen number flows such as micro-flows.
机译:具有高克努森数的微流和纳流的热流体现象的实验分析需要基于原子或分子与光子相互作用的测量技术。压敏涂料(PSP)技术具有作为高克努森数法中压力测量的诊断工具的潜力,因为它可以用作所谓的“分子传感器”。但是,由于传统的PSP由于使用聚合物粘合剂而太厚,并且对于微流的压力测量没有足够的空间分辨率,因此将PSP应用于微型设备非常困难。在这项研究中,我们采用Langmuir-Blodgett(LB)技术,使用Pd(II)八乙基卟啉(PdOEP)和Pd(II)中卟啉IX(PdMP)来制备压敏分子膜(PSMF),以解决普通PSP问题。已经测试了这些PSMF,以评估围绕微型设备进行压力测量的可行性。需要说明的是,由PdMP组成的PSMF具有比PdOEP更高的灵敏度。由于还认为可以通过引入花生酸(AA)作为LB膜的间隔分子来防止发光分子的聚集来提高PSMF的灵敏度,因此我们生产了PdMP与AA摩尔比为几的PSMF。以最合适的比例,即使PSMF层中的发光分子数量小于常规PSP中的发光分子数量,PSMF在具有高克努森数的低压区域也具有高灵敏度。该结果表明,PSMF对于测量高努数流(如微流)中的压力是可行的。

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  • 来源
    《Experiments in Fluids》 |2007年第4期|543-550|共8页
  • 作者单位

    Department of Micro-Nano Systems Engineering Nagoya University Nagoya Aichi 464-8603 Japan;

    Department of Micro-Nano Systems Engineering Nagoya University Nagoya Aichi 464-8603 Japan;

    Department of Micro-Nano Systems Engineering Nagoya University Nagoya Aichi 464-8603 Japan;

    Department of Micro-Nano Systems Engineering Nagoya University Nagoya Aichi 464-8603 Japan;

    Department of Micro-Nano Systems Engineering Nagoya University Nagoya Aichi 464-8603 Japan;

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