首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Facile Assembly of Large-Area 2D Microgel Colloidal Crystals Using Charge-Reversible Substrates
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Facile Assembly of Large-Area 2D Microgel Colloidal Crystals Using Charge-Reversible Substrates

机译:使用电荷可逆基板轻松组装大面积2D微凝胶胶体晶体

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摘要

2D colloidal crystals (CCs) have important applications; however, the fabrication of large-area, high-quality 2D CCs is still far from being trivial, and the fabrication of 2D microgel CCs is even harder. Here, we have demonstrated that they can be facilely fabricated using charge-reversible substrates. The charge-reversible substrates were prepared by modification with amino groups. The amino groups were then protected by amidation with 2,2-dimethylsuccinic anhydride. At acidic pH, the surface charge of the modified substrate will change from negative to positive as a result of the hydrolysis of the amide bonds and the regeneration of the amino groups. 2D microgel CCs can be simply fabricated by applying a concentrated microgel dispersion on the modified substrate. The negatively charged surface of the substrate allows the negatively charged microgel spheres, especially those close to the substrate, to self-assemble into 3D CCs. With the gradual hydrolysis of the amide bonds and the charge reversal of the substrate, the first 111 plane of the 3D assembly is fixed in situ on the substrate. The resulting 2D CC has a high degree of ordering because of the high quality of the parent 3D microgel CC. Because large-area 3D microgel CCs can be facilely fabricated, this method allows for the fabrication of 2D CCs of any size. Nonplanar substrates can also be used. In addition, the interparticle distance of the 2D array can be tuned by the concentration of the microgel dispersion. Besides rigid substrates (such as glass slides, quartz slides, and silicon wafers), flexible polymer films, including polyethylene terephthalate and poly(vinyl chloride) films, were also successfully used as substrates for the fabrication of 2D microgel CCs.
机译:2D胶体晶体(CC)具有重要的应用。然而,大面积,高质量2D CC的制造仍远非易事,而2D微凝胶CC的制造则更加困难。在这里,我们证明了可以使用电荷可逆基板轻松制造它们。通过用氨基改性制备电荷可逆的底物。然后通过用2,2-二甲基琥珀酸酐酰胺化来保护氨基。在酸性pH值下,由于酰胺键的水解和氨基的再生,改性底物的表面电荷将从负变为正。二维微凝胶CC可以简单地通过将浓缩的微凝胶分散体涂在改性基质上来制造。基底带负电的表面允许带负电荷的微凝胶球(尤其是靠近基底的微球)自组装成3D CC。随着酰胺键的逐渐水解和基板的电荷反转,将3D组件的第一个111平面原位固定在基板上。由于母体3D微凝胶CC的高质量,所得的2D CC具有高度的有序性。因为可以方便地制造大面积的3D微凝胶CC,所以该方法允许制造任何尺寸的2D CC。也可以使用非平面基板。另外,可以通过微凝胶分散体的浓度来调节2D阵列的粒子间距离。除了刚性基板(例如玻璃载玻片,石英载玻片和硅片)以外,包括聚对苯二甲酸乙二醇酯和聚氯乙烯膜在内的柔性聚合物薄膜也已成功用作制造2D微凝胶CC的基板。

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