Department of Chemistry and Chemical Biology, Rutgers University, Piscataway, NJ 08854, USA.
Chem Soc Rev. 2017 Jun 6;46(11):3242-3285. doi: 10.1039/c6cs00930a.
Metal-organic frameworks (MOFs) or porous coordination polymers (PCPs) are open, crystalline supramolecular coordination architectures with porous facets. These chemically tailorable framework materials are the subject of intense and expansive research, and are particularly relevant in the fields of sensory materials and device engineering. As the subfield of MOF-based sensing has developed, many diverse chemical functionalities have been carefully and rationally implanted into the coordination nanospace of MOF materials. MOFs with widely varied fluorometric sensing properties have been developed using the design principles of crystal engineering and structure-property correlations, resulting in a large and rapidly growing body of literature. This work has led to advancements in a number of crucial sensing domains, including biomolecules, environmental toxins, explosives, ionic species, and many others. Furthermore, new classes of MOF sensory materials utilizing advanced signal transduction by devices based on MOF photonic crystals and thin films have been developed. This comprehensive review summarizes the topical developments in the field of luminescent MOF and MOF-based photonic crystals/thin film sensory materials.
金属-有机框架(MOFs)或多孔配位聚合物(PCPs)是具有多孔面的开放、结晶超分子配位结构。这些化学可剪裁的框架材料是目前研究的热点和重点,在传感材料和器件工程领域尤其相关。随着基于 MOF 的传感领域的发展,许多不同的化学功能已被精心和合理地植入 MOF 材料的配位纳米空间中。通过晶体工程和结构-性能关系的设计原则,开发出具有广泛荧光传感性能的 MOF,这导致了大量且快速增长的文献。这项工作推动了许多关键传感领域的发展,包括生物分子、环境毒素、爆炸物、离子物种等。此外,还开发了利用基于 MOF 光子晶体和薄膜的器件进行先进信号转导的新型 MOF 传感材料。本综述总结了发光 MOF 和基于 MOF 的光子晶体/薄膜传感材料领域的最新发展。