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Facile control of silica nanoparticles using a novel solvent varying method for the fabrication of artificial opal photonic crystals

机译:使用新型溶剂变化方法轻松控制二氧化硅纳米颗粒,以制造人造蛋白石光子晶体

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摘要

In this work, the Stober process was applied to produce uniform silica nanoparticles (SNPs) in the meso-scale size range. The novel aspect of this work was to control the produced silica particle size by only varying the volume of the solvent ethanol used, whilst fixing the other reaction conditions. Using this one-step Stober-based solvent varying (SV) method, seven batches of SNPs with target diameters ranging from 70 to 400 nm were repeatedly reproduced, and the size distribution in terms of the polydispersity index (PDI) was well maintained (within 0.1). An exponential equation was used to fit the relationship between the particle diameter and ethanol volume. This equation allows the prediction of the amount of ethanol required in order to produce particles of any target diameter within this size range. In addition, it was found that the reaction was completed in approximately 2 h for all batches regardless of the volume of ethanol. Structurally coloured artificial opal photonic crystals (PCs) were fabricated from the prepared SNPs by self-assembly under gravity sedimentation.
机译:在这项工作中,斯托伯(Stober)工艺被用于生产中尺度尺寸范围内的均匀二氧化硅纳米颗粒(SNP)。这项工作的新颖之处在于通过仅改变所用溶剂乙醇的体积来控制生产的二氧化硅的粒径,同时固定其他反应条件。使用这一单步的基于Stober的溶剂变化(SV)方法,重复生产了目标直径范围为70至400 nm的七批SNP,并很好地保持了以多分散指数(PDI)为单位的尺寸分布0.1)。使用指数方程拟合粒径和乙醇体积之间的关系。该方程式可以预测生成该尺寸范围内任何目标直径的颗粒所需的乙醇量。另外,发现不管乙醇的体积如何,所有批次的反应均在约2小时内完成。在重力沉降下通过自组装从制备的SNP制备结构有色的人造蛋白石光子晶体(PC)。

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