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Optical porosimetry and investigations of the porosity experienced by light interacting with porous media

机译:光学孔隙率法和光与多孔介质相互作用所经历的孔隙率研究

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摘要

We investigate how light samples disordered porous materials such as ceramics and pharmaceutical materials. By combining photon time-of-flight spectroscopy and sensitive laser-based gas sensing, we obtain information on the extent to which light interacts with solid and pore volumes, respectively. Comparison with mercury intrusion porosimetry shows that light predominantly interacts with the solid. Analysis based on a two-state model does not fully explain observations, revealing a need for refined modeling. Nonetheless, excellent correlation between actual porosity and the porosity experienced by photons demonstrates the potential of nondestructive optical porosimetry based on gas absorption.
机译:我们研究轻质样品如何扰乱多孔材料,例如陶瓷和药物材料。通过结合光子飞行时间光谱和基于激光的灵敏气体传感,我们分别获得了光与固体和孔体积相互作用的程度的信息。与压汞法的比较表明,光主要与固体相互作用。基于二态模型的分析不能完全解释观察结果,这表明需要精炼模型。尽管如此,实际孔隙率与光子所经历的孔隙率之间的极好的相关性证明了基于气体吸收的无损光学孔隙率法的潜力。

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