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多发射体发光金属有机框架的设计与性质

Design and properties of multiple-emitter luminescent metal-organic frameworks.

作者信息

Xing Shanghua, Janiak Christoph

机构信息

Hoffmann Institute of Advanced Materials, Shenzhen Polytechnic, 7098 Liuxian Blvd, Nanshan, Shenzhen, China.

出版信息

Chem Commun (Camb). 2020 Oct 21;56(82):12290-12306. doi: 10.1039/d0cc04733c. Epub 2020 Sep 24.

Abstract

Multi-emitter luminescent metal-organic frameworks (LMOFs) possess multiple emission bands that can cover a wider spectral region, which is a prerequisite for white-light emitting and multi-dimensional ratiometric fluorescent sensing. By taking advantage of the structure features of MOFs (e.g. hybrid structure, porosity) and the various luminescence origins of LMOFs, different emission sources can be designed and combined with each other into a homogeneous solid-state LMOF phase with the desired emission properties. This feature article reviews the recent development of multi-emitter LMOFs, and focuses on the design strategies for creating multi-emitter LMOFs based on at least two emission centers. The design strategies are classified into and discussed along six categories: type I metal-linker emitters, Type II multi-metal emitters, Type III multi-linker emitters, Type IV chromophore@LMOF (chromophore incorporated into an already luminescent MOF), Type V chromophores@MOF (multi-chromophores embedded into a non-emissive MOF) and Type VI multi-heterostructure LMOF emitters. The new class of Type VI includes core-shell structured LMOF⊃LMOF and nanostructured LMOF/LMOF thin films on a substrate. The good spatial separation between the different emitters in their own but chemically linked LMOF phase can retain their emission properties with less interference with the other emitters.

摘要

多发射体发光金属有机框架材料(LMOFs)具有多个发射带,可覆盖更宽的光谱区域,这是实现白光发射和多维比率荧光传感的前提条件。利用金属有机框架材料(MOFs)的结构特点(如混合结构、孔隙率)以及LMOFs的多种发光起源,可以设计不同的发射源,并将它们相互组合成具有所需发射特性的均匀固态LMOF相。这篇专题文章综述了多发射体LMOFs的最新进展,并重点介绍了基于至少两个发射中心创建多发射体LMOFs的设计策略。这些设计策略分为六类并进行了讨论:I型金属-配体发射体、II型多金属发射体、III型多配体发射体、IV型发色团@LMOF(发色团掺入已发光的MOF中)、V型发色团@MOF(多个发色团嵌入非发光MOF中)和VI型多异质结构LMOF发射体。新型的VI型包括核壳结构的LMOF⊃LMOF和衬底上的纳米结构LMOF/LMOF薄膜。不同发射体在其自身但化学连接的LMOF相中具有良好的空间分离,能够保留其发射特性,且相互干扰较小。

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