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首页> 外文期刊>Journal of the European Ceramic Society >Systematic investigation of close-packed silica nanospheres monolayer under sintering conditions
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Systematic investigation of close-packed silica nanospheres monolayer under sintering conditions

机译:烧结条件下近填充二氧化硅纳米体单层的系统研究

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摘要

In this paper, we have quantified and investigated the effect of various sintering temperature on close-packed Silica Nanospheres (SNs) monolayers. SNs with diameters of 140, 175 and 220 nm were fabricated by an effective and reliable spin-coating technique. The fabricated SNs monolayers were sintered up to 1200 degrees C and were analyzed from FESEM to investigate in details for local and extended transformations in their structural and morphological properties. A distinct "neck-formation" was observed and was quantified with different particle size distribution as well as surface packing density. It was observed that SNs monolayer undergoes intra-particle reformation in the form of shrinkage in individual SNs and compactification of growth domains, followed by inter-particle sintering. A geometrical model was developed to determine the curvature radius and interpenetration depth thus enabling us to quantify the parameters that dominate the dynamics of the sintering process for such non-porous SNs.
机译:在本文中,我们已经量化并研究了各种烧结温度对近填充硅纳米球(SNS)单层的影响。直径为140,175和220nm的SNS通过有效可靠的旋涂技术制造。制造的SNS单层烧结高达1200℃,并从FESEM分析,以便在其结构和形态特性中详细地研究局部和延长的转化。观察到一种不同的“颈部形成”,并用不同的粒度分布量化以及表面填充密度。观察到SNS单层以单独的SNS中的收缩的形式进行颗粒状重整和生长结构域的压缩,然后进行颗粒烧结。开发了几何模型以确定曲率半径和互通向深度,从而使我们能够量化支配烧结过程的动态的参数,用于这种无孔SNS。

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