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Porous Silicon as a Nanostructured Template for Enhanced Immobilization and Crystallization of Inorganic and Biomaterials

机译:多孔硅作为纳米结构模板,用于增强无机和生物材料的固定和结晶

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In the current paper, we review our experimental and theoretical results demonstrating enhanced immobilization and crystallization of inorganic and biological materials on porous silicon and present additional explanation of observed effects. The examples of experimental results on room-temperature crystallization of SiO_2 as well as of enhanced adhesion and crystallization of ceramic sol-gel derived films on porous silicon are shown. These phenomena have been observed at conditions which were insufficient for crystallization on flat silicon surfaces. The facilitation of crystallization on porous silicon is explained by surface fractality as well as by the decrease of potential barrier of nucleation related to the decrease of the critical nucleus volume at heterogeneous nucleation in pores.
机译:在目前的论文中,我们审查了我们的实验和理论结果,证明了对多孔硅的无机和生物材料的增强固定和结晶,并对观察到的效果进行了额外的解释。示出了SiO_2室温结晶的实验结果的实例以及陶瓷溶胶 - 凝胶衍生薄膜的增强粘附和结晶的实验结果。在扁平硅表面上结晶不足的条件下已经观察到这些现象。通过表面变性解释多孔硅结晶的促进,以及与孔隙孔中异质成核的临界核体积减少有关的核心势垒的降低。

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