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Colloidal co-assembly route to large-area, high-quality photonic crystals

机译:胶体组装路线到大面积,高质量的光子晶体

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Whereas considerable interest exists in self-assembly of well-ordered, porous "inverse opal" structures for optical, electronic, and (bio)chemical applications, uncontrolled defect formation has limited the scale-up and practicality of such approaches. Here we demonstrate a new method for assembling highly ordered, crack-free inverse opal films over a centimeter scale. Multilayered composite colloidal crystal films have been generated via evaporative deposition of polymeric colloidal spheres suspended within a hydrolyzed silicate sol-gel precursor solution. The co-assembly of a sacrificial colloidal template with a matrix material avoids the need for liquid infiltration into the preassembled colloidal crystal and minimizes the associated cracking and inhomogeneities of the resulting inverse opal films. We demonstrate that this co-assembly approach allows the fabrication of hierarchical structures not achievable by conventional methods, such as multilayered films and deposition onto patterned or curved surfaces, and can be transformed into various materials that retain the morphology and order of the original films. We show that colloidal co-assembly represents a simple, low-cost, scalable method for generating high-quality, chemically tailorable inverse opal films for optical applications.
机译:尽管对用于光,电子和(生物)化学应用的有序的多孔“反蛋白石”结构的自组装存在相当大的兴趣,但是不受控制的缺陷形成限制了这种方法的扩大规模和实用性。在这里,我们演示了一种用于在厘米级上组装高度有序,无裂纹的反蛋白石薄膜的新方法。多层复合胶体晶体薄膜是通过将悬浮在水解硅酸盐溶胶-凝胶前体溶液中的聚合物胶体球蒸发沉积而产生的。牺牲胶体模板与基质材料的共同组装避免了液体渗透到预组装的胶体晶体中的需要,并且使所得的反蛋白石膜的相关开裂和不均匀性最小化。我们证明了这种共组装方法允许制造常规方法无法实现的分层结构,例如多层膜并沉积到图案化或弯曲的表面上,并且可以转换为保留原始膜的形态和顺序的各种材料。我们表明,胶体共组装代表了一种简单,低成本,可扩展的方法,可生成用于光学应用的高质量,化学可定制的反蛋白石薄膜。

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