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Gas sensing by using volume fraction of adsorption in photonic crystals

机译:利用光子晶体中吸附的体积分数进行气体传感

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Generally, photonic bandgap (PBG) would shift when photonic crystals (PCs) are exposed to different surrounding conditions. Thus, the shift of PBG could be used to study the adsorption behavior of gas on the surface of PCs. However, the amount of PBG shift only contains finite information about analyte which could cause the change of structural parameters of PCs. In this paper, we have deduced the volume fraction of adsorption vapor (V-vap) in silica PCs to quantitatively explain the effect of target gases on adsorption behavior according to Replacing model based on our previous research. In this work, the effect of volume fraction of void in silica PCs and types of target gases on gas adsorption behavior has been discussed by using V-vap.
机译:通常,当光子晶体(PC)暴露于不同的周围条件时,光子带隙(PBG)会发生偏移。因此,PBG的位移可用于研究PC表面气体的吸附行为。但是,PBG的移动量仅包含有关分析物的有限信息,这可能会导致PC结构参数的变化。在本文中,我们推导了二氧化硅PC中吸附蒸气(V-vap)的体积分数,以根据我们先前研究的“替换模型”定量解释了目标气体对吸附行为的影响。在这项工作中,已经通过使用V-vap讨论了二氧化硅PC中空隙体积分数和目标气体类型对气体吸附行为的影响。

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