Stein Andreas
Department of Chemistry, University of Minnesota, 207 Pleasant Street SE, Minneapolis, Minnesota 55455-0431, United States.
Langmuir. 2023 Feb 28;39(8):2890-2910. doi: 10.1021/acs.langmuir.2c03297. Epub 2023 Feb 9.
Over the past 25 years, the field of colloidal crystal templating of inverse opal or three-dimensionally ordered macroporous (3DOM) structures has made tremendous progress. The degree of structural control over multiple length scales, understanding of mechanical properties, and complexity of systems in which 3DOM materials are a component have increased substantially. In addition, we are now seeing applications of 3DOM materials that make use of multiple features of their architecture at the same time. This Feature Article focuses on the different properties of 3DOM materials that provide functionality, including a relatively large surface area, the interconnectedness of the pores and the resulting good accessibility of the internal surface, the nanostructured features of the walls, the structural hierarchy and periodicity, well-defined surface roughness, and relative mechanical robustness at low density. It provides representative examples that illustrate the properties of interest related to applications including energy storage and conversion systems, sensors, catalysts, sorbents, photonics, actuators, and biomedical materials or devices.
在过去25年里,反蛋白石或三维有序大孔(3DOM)结构的胶体晶体模板领域取得了巨大进展。在多个长度尺度上的结构控制程度、对力学性能的理解以及3DOM材料作为组分的系统复杂性都有了显著提高。此外,我们现在看到3DOM材料的应用能够同时利用其结构的多种特性。这篇专题文章重点介绍了3DOM材料具有功能性的不同特性,包括相对较大的表面积、孔的相互连通性以及由此带来的内表面良好可达性、壁的纳米结构特征、结构层次和周期性、明确的表面粗糙度以及低密度下相对的机械稳健性。它提供了具有代表性的例子,说明了与能量存储和转换系统、传感器、催化剂、吸附剂、光子学、致动器以及生物医学材料或器件等应用相关的感兴趣的特性。