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A method to improve the quality of silica nanoparticles (SNPs) over increasing storage durations

机译:一种在增加存储期限内提高二氧化硅纳米粒子(SNP)质量的方法

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摘要

The solvent varying technique (SVT) provides a simple method for the production of uniform batches of silica nanoparticles (SNPs) of a target average diameter. SNPs synthesized using the SVT have been observed to agglomerate over increasing storage times leading to an increase in average particle diameter. Since the particle diameters of the SNPs produced using the SVT may vary over increasing storage durations, the previous model, suggested by Gao et al., which is based on the diameter of the original SNPs, is unreliable when predicting a target particle diameter using the initial volume of ethanol. A centrifuge and replacement of solvent method has been applied in this investigation to the SNP solutions created using the SV technique. This reduces the amount of unused reactants in the centrifuged colloidal suspensions, which further improves the quality of the SNPs and hence any subsequent photonic crystals. Post centrifuge and replace, the morphology of the centrifuged particles is more uniform than that of the original particles, which has been evaluated using SEM micrographs. The face-centered cubic (FCC) structures observed on the surface of the photonic crystal films have also been imaged using a SEM. A linear equation for the prediction of the SNP diameters for a given initial amount of ethanol is proposed based on the centrifuged SNP diameters. The particle diameter measurements for the new equation were recorded using a DLS instrument. The dispersion of the SNPs was also recorded using DLS. The morphology of the surface of the particles has been confirmed using TEM micrographs. >Graphical abstract
机译:溶剂变化技术(SVT)提供了一种生产目标平均直径的均匀批次的二氧化硅纳米颗粒(SNP)的简单方法。已经观察到使用SVT合成的SNP在增加的存储时间上会聚结,从而导致平均粒径的增加。由于使用SVT产生的SNP的粒径可能会随着存储时间的延长而变化,因此由Gao等人提出的基于原始SNP直径的先前模型在使用SVT预测目标粒径时是不可靠的。乙醇的初始体积。在这项研究中,离心和溶剂置换法已应用于使用SV技术创建的SNP溶液。这减少了离心的胶体悬浮液中未使用的反应物的量,从而进一步提高了SNP的质量,从而改善了随后的任何光子晶体。离心和更换后,离心颗粒的形态比原始颗粒更均匀,这已使用SEM显微照片进行了评估。还已经使用SEM对在光子晶体膜的表面上观察到的面心立方(FCC)结构进行了成像。基于离心的SNP直径,提出了用于预测给定初始乙醇量的SNP直径的线性方程。使用DLS仪器记录新方程式的粒径测量值。还使用DLS记录了SNP的分散。使用TEM显微照片已经证实了颗粒表面的形态。 <!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> >图形摘要<!- fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7->ᅟ

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