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Preparation of monodisperse silica spheres and determination of their densification behaviour

机译:单分散二氧化硅球的制备及其致密化行为的测定

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摘要

Monodisperse silica spheres in the 50-520 nm size range were prepared by using the Stober process. Diffusive growth has been determined from Nielsen chronomal analysis for the 520 and 310 nm monodisperse silica spheres. The densification behaviour and evolution of the microstructure of the sphere compacts indicated an inverse dependence of shrinkage rate on the sphere size due to viscous sintering. The increase in sphere size from 50 to 500 nm shifted the densification temperature from ∼ 1120 °C to 1240 °C. The amorphous nature of the spheres was conserved up to 1200 °C where cristobalite crystal nucleation started and complete transformation to cristobalite phase has been observed upon heat treatment at 1300 °C. The activation energies for viscous sintering according to the Frenkel and Mackenzie/Shuttleworth models were calculated as 125 and 335 kJ/mol, respectively. These substantially low activation energies can be attributed to the presence of a significant level of silanol groups.
机译:使用Stober工艺制备了50-520 nm尺寸范围的单分散二氧化硅球。根据520和310 nm单分散二氧化硅球的尼尔森时序分析确定了扩散生长。球形压实体的致密化行为和微观结构的演变表明,由于粘性烧结,收缩率与球形尺寸成反比关系。球体尺寸从50 nm增加到500 nm,致密化温度从〜1120°C变为1240°C。球形的无定形性质一直保持到1200°C,方石英开始成核,并在1300°C热处理后观察到完全转变为方石英相。根据Frenkel模型和Mackenzie / Shuttleworth模型,粘性烧结的活化能分别计算为125和335 kJ / mol。这些明显较低的活化能可以归因于大量硅烷醇基团的存在。

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