光子晶体
纳米技术
光子学
自组装
金属有机骨架
化学
光子超材料
八面体
粒子(生态学)
纳米晶
十二面体
材料科学
吸附
结晶学
化学物理
晶体结构
光电子学
地质学
有机化学
海洋学
作者
Civan Avcı,Inhar Imaz,Arnau Carné‐Sánchez,Jose Ángel Pariente,Nikos Tasios,Javier Pérez‐Carvajal,M. I. Alonso,Álvaro Blanco,Marjolein Dijkstra,Cefe López,Daniel Maspoch
出处
期刊:Nature Chemistry
[Springer Nature]
日期:2017-10-23
卷期号:10 (1): 78-84
被引量:331
摘要
Self-assembly of particles into long-range, three-dimensional, ordered superstructures is crucial for the design of a variety of materials, including plasmonic sensing materials, energy or gas storage systems, catalysts and photonic crystals. Here, we have combined experimental and simulation data to show that truncated rhombic dodecahedral particles of the metal-organic framework (MOF) ZIF-8 can self-assemble into millimetre-sized superstructures with an underlying three-dimensional rhombohedral lattice that behave as photonic crystals. Those superstructures feature a photonic bandgap that can be tuned by controlling the size of the ZIF-8 particles and is also responsive to the adsorption of guest substances in the micropores of the ZIF-8 particles. In addition, superstructures with different lattices can also be assembled by tuning the truncation of ZIF-8 particles, or by using octahedral UiO-66 MOF particles instead. These well-ordered, sub-micrometre-sized superstructures might ultimately facilitate the design of three-dimensional photonic materials for applications in sensing.
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