首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Automated preparation method for colloidal crystal arrays of monodisperse and binary colloid mixtures by contact printing with a pintool plotter
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Automated preparation method for colloidal crystal arrays of monodisperse and binary colloid mixtures by contact printing with a pintool plotter

机译:用pintool绘图仪接触印刷自动制备单分散和二元胶体混合物的胶体晶体阵列的方法

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摘要

Photonic crystals and photonic band gap materials with periodic variation of the dielectric constant in the submicrometer range exhibit unique optical properties such as opalescence, optical stop bands, and photonic band gaps. As such, they represent attractive materials for the active elements in sensor arrays. Colloidal crystals, which are 3D gratings leading to Bragg diffraction, are one potential precursor of such optical materials. They have gained particular interest in many technological areas as a result of their specific properties and ease of fabrication. Although basic techniques for the preparation of regular patterns of colloidal crystals on structured substrates by self-assembly of mesoscopic particles are known, the efficient fabrication of colloidal crystal arrays by simple contact printing has not yet been reported. In this article, we present a spotting technique used to produce a microarray comprising up to 9600 single addressable sensor fields of colloidal crystal structures with dimensions down to 100 mu m on a microfabricated substrate in different formats. Both monodisperse colloidal crystals and binary colloidal crystal systems were prepared by contact printing of polystyrene particles in aqueous suspension. The array morphology was characterized by optical light microscopy and scanning electron microscopy, which revealed regularly ordered crystalline structures for both systems. In the case of binary crystals, the influence of the concentration ratio of the large and small particles in the printing suspension on the obtained crystal structure was investigated. The optical properties of the colloidal crystal arrays were characterized by reflection spectroscopy. To examine the stop bands of the colloidal crystal arrays in a high-throughput fashion, an optical setup based on a CCD camera was realized that allowed the simultaneous readout of all of the reflection spectra of several thousand sensor fields per array in parallel. In agreement with Bragg's relation, the investigated arrays exhibited strong opalescence and stop bands in the expected wavelength range, confirming the successful formation of highly ordered colloidal crystals. Furthermore, a narrow distribution of wavelength-dependent stop bands across the sensor array was achieved, demonstrating the capability of producing highly reproducible crystal spots by the contact printing method with a pintool plotter.
机译:介电常数在亚微米范围内周期性变化的光子晶体和光子带隙材料表现出独特的光学特性,如乳光,光学阻带和光子带隙。因此,它们代表了传感器阵列中有源元件的诱人材料。胶体晶体是导致布拉格衍射的3D光栅,是此类光学材料的一种潜在前体。由于它们的特殊性能和易于制造,它们在许多技术领域引起了特别的兴趣。尽管通过介观粒子的自组装在结构化基底上制备胶体晶体的规则图案的基本技术是已知的,但尚未报道通过简单的接触印刷有效制备胶体晶体阵列的方法。在本文中,我们提出了一种斑点技术,用于在微加工基板上以不同格式生产微阵列,该阵列包含多达9600个胶体晶体结构的单个可寻址传感器区域,尺寸可低至100微米。通过在水性悬浮液中接触印刷聚苯乙烯颗粒,制备了单分散胶体晶体和二元胶体晶体系统。阵列形态通过光学显微镜和扫描电子显微镜表征,揭示了两个系统的规则有序晶体结构。在二元晶体的情况下,研究了印刷悬浮液中大颗粒和小颗粒的浓度比对获得的晶体结构的影响。胶体晶体阵列的光学性质通过反射光谱法表征。为了以高通量的方式检查胶体晶体阵列的阻带,实现了一种基于CCD相机的光学装置,该装置可以同时读取每个阵列数千个传感器场的所有反射光谱。与布拉格关系一致,所研究的阵列在预期的波长范围内显示出强烈的乳光和阻带,证实了成功形成高度有序的胶体晶体。此外,在传感器阵列上实现了波长相关的阻带的窄分布,这证明了通过使用Pintool绘图仪的接触印刷方法可以产生高度可复制的晶体斑点。

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