Color-tunable and white circularly polarized luminescence through confining guests into chiral MOFs.
Hong-Ru FuRuo-Yu ZhangTing LiChen-Ying WeiShuang LiuJia-Yi XuXueli ZhuJiaojiao WeiQing-Rong DingLu-Fang MaPublished in: Chemical communications (Cambridge, England) (2024)
Herein, chiral metal-organic frameworks (MOFs), DCF-20 and LCF-20, were utilized as matrices for both chirality transfer and energy transfer. HBT1@MOFs and HBT2@MOFs emit excitation-dependent circularly polarized luminescence (CPL) due to excited-state intramolecular proton transfer (ESIPT). HBT1/C152/NIR@MOFs exhibit full-color and white CPL. The luminescence dissymmetry factors ( g lum ) were significantly increased, benefiting from the efficient chirality space transfer and high luminescence efficiency.