Chen Jiabo, Xie Yao, Yang Wanjun, Sun Renrui, Xing Feifei, Mandl Gabrielle A, Capobianco John A, Sun Lining
Department of Chemistry, College of Sciences, Shanghai University, Shanghai, 200444, China.
Department of Chemistry and Biochemistry and Centre for NanoScience Research, Concordia University, Montreal, QC H4B 1R6, Canada.
Angew Chem Int Ed Engl. 2025 Jun 25:e202509093. doi: 10.1002/anie.202509093.
Luminescent 2D metal-organic frameworks (MOFs) are a class of metal-organic framework materials expanded in a 2D plane, which have a wide range of applications in fields of optoelectronic devices, sensors, and information storage due to their unique layered structure and excellent optical properties. Currently, research on luminescent 2D MOFs mainly focuses on down-shifting luminescence, while the exploration of upconversion luminescence remains in its early stages. Herein, a novel 2D Yb-PMA MOFs were synthesized, and red upconversion luminescence at 660 nm under 980 nm excitation was successfully achieved by introducing Ho as the luminescence center and using Yb as the sensitizer. In addition, multimode emitting MOFs with both upconversion and down-shifting luminescence were further constructed by codoping Tb or Eu. Inspired by the layered structure of 2D materials, multilayer stacked 2D MOFs composites were prepared by ultrasonic exfoliation method and upconversion luminescence was realized for the first time by interfacial energy transfer between different components. This strategy not only expands the optical modulation of luminescent 2D MOFs, but also provides new ideas for the construction of multifunctional luminescent materials. The upconversion/down-shifting luminescent lanthanide-based 2D MOFs designed in this work show good potential for application in the field of information encryption.
发光二维金属有机框架材料(MOFs)是一类在二维平面上扩展的金属有机框架材料,由于其独特的层状结构和优异的光学性能,在光电器件、传感器和信息存储等领域有着广泛的应用。目前,对发光二维MOFs的研究主要集中在下转换发光,而上转换发光的探索仍处于早期阶段。在此,合成了一种新型的二维Yb-PMA MOFs,并通过引入Ho作为发光中心和使用Yb作为敏化剂,在980nm激发下成功实现了660nm的红色上转换发光。此外,通过共掺杂Tb或Eu进一步构建了具有上转换和下转换发光的多模发射MOFs。受二维材料层状结构的启发,采用超声剥离法制备了多层堆叠的二维MOFs复合材料,并首次通过不同组分之间的界面能量转移实现了上转换发光。该策略不仅扩展了发光二维MOFs的光学调制,也为多功能发光材料的构建提供了新思路。本文设计的上转换/下转换发光镧系基二维MOFs在信息加密领域显示出良好的应用潜力。