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Morphological control in colloidal crystal templating of inverse opals, hierarchical structures, and shaped particles

机译:逆蛋白石、分层结构和异形颗粒的胶体晶体模板中的形态控制

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摘要

Inverse opals or three-dimensionally ordered macroporous (3DOM) materials, prepared by colloidal crystal templating (CCT) methods, possess distinctive structural features that are important for the design of photonic crystals, sensors, power sources, catalysts, and various other applications. In the past decade, vast progress has been made in shaping these materials at various length scales. It is now possible to prepare 3DOM materials in a variety of simple and, complex compositions, in which pore sizes, pore shapes, and skeletal geometries can be adjusted statically and sometimes even dynamically to alter the physical properties of the material. Hierarchical pore structures can be achieved by combining CCT with additional templating techniques. Furthermore, shaped porous nanoparticles may be synthesized using CCT methods. This review will highlight recent advances in controlling both the internal structure of inverse opals and their external morphology, enhancing compositional complexity, endowing these solids with functionality, and incorporating them in integrated functional systems.
机译:通过胶体晶体模板 (CCT) 方法制备的反蛋白石或三维有序大孔 (3DOM) 材料具有独特的结构特征,对于光子晶体、传感器、电源、催化剂和各种其他应用的设计非常重要。在过去的十年中,在各种长度尺度上塑造这些材料方面取得了巨大进展。现在可以制备各种简单和复杂成分的 3DOM 材料,其中孔径、孔形和骨架几何形状可以静态调整,有时甚至可以动态调整,以改变材料的物理特性。通过将 CCT 与其他模板技术相结合,可以实现分层孔隙结构。此外,可以使用CCT方法合成成型的多孔纳米颗粒。本文将重点介绍在控制反蛋白石内部结构及其外部形态、增强成分复杂性、赋予这些固体功能以及将它们纳入综合功能系统方面的最新进展。

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