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Transport mechanisms in nanostructured porous silicon layers for sensor and filter applications

机译:纳米结构多孔硅层中用于传感器和滤波器应用的传输机制

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Mechanisms such as diffusion, adsorption, desorption and capillary condensation of gases or fluidics in porous materials play an important role when using these materials for sensing or filtration. Transport processes were investigated in freestanding porous silicon (PS) membranes for liquids and gases. Transport models in nanostructured PS membranes are analyzed considering several types of transport mechanisms for different liquids and gases. As a new analytical approach, transport of liquids (organic and aqueous solutions) and vapors was studied optically in PS optical multilayers. Adsorption in the meso-and microporous materials occurs rather fast (typical adsorption time of 5 s). Natural desorption time at ambient conditions depends on the vapor pressure of the investigated adsorbates and can be reduced using heating or purging. Adsorption and desorption isotherms are measured to investigate interactions between sample surface and adsorbate as a function of surface treatment and to evaluate specific surface area and pore size distribution of porous material.
机译:当使用这些材料进行传感或过滤时,气体或流体在多孔材料中的扩散,吸附,解吸和毛细管缩合等机制将发挥重要作用。在用于液体和气体的独立式多孔硅(PS)膜中研究了运输过程。考虑到不同液体和气体的几种传输机理,分析了纳米结构PS膜中的传输模型。作为一种新的分析方法,在PS光学多层膜中对液体(有机和水溶液)和蒸气的传输进行了光学研究。在中孔和微孔材料中的吸附相当快(典型吸附时间为5 s)。在环境条件下的自然脱附时间取决于所研究的被吸附物的蒸气压,可以通过加热或吹扫来减少。测量吸附和解吸等温线,以调查样品表面和被吸附物之间的相互作用,作为表面处理的函数,并评估比表面积和多孔材料的孔径分布。

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