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Controllable fabrication of large-area 2D colloidal crystal masks with large size defect-free domains based on statistical experimental design

机译:基于统计实验设计的可控制制造具有大尺寸无缺陷域的大面积二维胶体晶体掩模

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摘要

A large-area hexagonal packed monolayer of silica spheres with consistent defect-free domains of a size larger than 3000 μm~2 was prepared by spin coating on glass substrates with the assistance of experimental design and statistical analysis. The ratio of the defect-free monolayer area to the square of sphere diameter is nearly two times of the previously reported maximum values. Several parameters involved in the spin coating systems were investigated. The results indicated that the relative humidity and the rotational speed of the first step of the spin coating had the most important impact on the ordering degree of the prepared monolayer. Furthermore, the ordering degree of the obtained monolayer increased with a decreased relative humidity. In addition, it reached an optimal value when the first rotational speed during spin coating reached a value of 1000 rpm. From this study, it can be concluded that statistical experimental design is an efficient strategy, especially for multi-factor phenomenon studies.
机译:在实验设计和统计分析的辅助下,通过旋涂法在玻璃基板上制备了面积大于3000μm〜2的具有恒定无缺陷区域的大面积六边形填充二氧化硅球。无缺陷单层面积与球直径平方之比几乎是先前报道的最大值的两倍。研究了旋涂系统中涉及的几个参数。结果表明,旋涂第一步的相对湿度和转速对制备的单层的有序度影响最大。此外,获得的单层的有序度随着相对湿度的降低而增加。另外,当旋涂期间的第一旋转速度达到1000rpm的值时,其达到最佳值。从这项研究可以得出结论,统计实验设计是一种有效的策略,尤其是对于多因素现象研究而言。

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