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首页> 外文期刊>Applied Surface Science >Optimizing the concentration of colloidal suspensions in convective assembly of centimeter-sized uniform monolayer colloidal crystals
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Optimizing the concentration of colloidal suspensions in convective assembly of centimeter-sized uniform monolayer colloidal crystals

机译:优化厘米级均匀单层胶体晶体对流组装中胶体悬浮液的浓度

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摘要

Graphical abstractDisplay OmittedHighlightsIt is shown that the concentration of the colloidal suspension has a significant role in the assembly of a uniform centimeter-sized monolayer colloidal crystal (MCC).It is deduced that the optimized range of the concentrations for fabricating MCCs made of polystyrene microspheres with the diameter of 508 nm is 1.7 wt% to1.85 wt%.Different methods have been used to analyze the samples such as taking the transmission spectra, optical microscopy imaging, scanning electron microscopy imaging and studying the diffraction patterns of the samples.AbstractIn this paper, it is shown that the concentration of the colloidal suspension has a significant role in the assembly of a uniform centimeter-sized monolayer colloidal crystal (MCC) and the optimized range of the concentrations for fabricating MCCs made of polystyrene (PS) microspheres with the diameter of 508nm is obtained. The gravity assisted convective assembly method is used to fabricate MCCs. It has been shown that not only the size of the MCC but also its uniformity and quality is highly dependent on the concentration of the colloidal suspension. Having used different methods to analyze the samples such as taking the transmission spectra, optical microscopy imaging, scanning electron microscopy (SEM) imaging, and studying the diffraction patterns of the samples, it is deduced that the optimized range of the concentration is from 1.7wt% to 1.85wt%.
机译: 图形摘要 < ce:simple-para>省略显示 突出显示 显示胶体悬浮液的浓度在均匀厘米大小的单层胶体晶体(MCC)的组装中起着重要作用。 使用了不同的方法分析样品,例如透射光谱,光学显微镜成像,扫描电子显微镜成像以及研究样品的衍射图样。 摘要 在本文中,表明胶体悬浮液的浓度具有在非盟组装中的重要作用获得了乙腈厘米大小的单层胶体晶体(MCC),以及用于制造直径为508nm的聚苯乙烯(PS)微球制成的MCC的最佳浓度范围。重力辅助对流组装法用于制造MCC。已经表明,不仅MCC的大小,而且其均匀性和质量高度依赖于胶体悬浮液的浓度。通过采用不同的方法对样品进行分析,例如通过透射光谱,光学显微镜成像,扫描电子显微镜(SEM)成像以及研究样品的衍射图样,可以得出最佳浓度范围为1.7wt %到1.85wt%。

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