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Highly Boosting Circularly Polarized Luminescence of Chiral Metal-Imidazolate Frameworks.


ABSTRACT: To develop a simple and general method for improving the circularly polarized luminescence (CPL) performances of materials is of great significance. In this work, two pairs of CPL-active homochiral metal-organic frameworks (MOFs) P/M-Et and P/M-Et(Cd) with eta topology are reported. In comparison to the reported isomorphic Zn-imidazolate MOFs P-Me and M-Me, both luminescence dissymmetry factor (glum ) and photoluminescence quantum yields (ΦPL ) of P-Et and M-Et are largely improved by simply changing the methyl group to an ethyl group of ligands in P-Et and M-Et. Furthermore, the |glum | values are significantly amplified up to 0.015 from 0.0057 by introducing the non-luminescent halogenated aromatics, while an enhanced fluorescence efficiency is observed simultaneously (from 27.2% to 47.3%). The figure of merit value is about 40 times larger than that of P-Me and M-Me. Similarly, the CPL performances of P/M-Et(Cd) are improved by about five times after encapsulating fluorobenzene molecules. This work represents a new and simple method for developing CPL-active MOF materials.

SUBMITTER: Wang XZ 

PROVIDER: S-EPMC10265085 | biostudies-literature | 2023 Jun

REPOSITORIES: biostudies-literature

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Highly Boosting Circularly Polarized Luminescence of Chiral Metal-Imidazolate Frameworks.

Wang Xue-Zhi XZ   Zhou Chuang-Wei CW   Zheng Ji J   Lian Zhao-Xia ZX   Sun Meng-Ying MY   Huang Yong-Liang YL   Luo Dong D   Li Yan Yan YY   Zhou Xiao-Ping XP  

Advanced science (Weinheim, Baden-Wurttemberg, Germany) 20230418 17


To develop a simple and general method for improving the circularly polarized luminescence (CPL) performances of materials is of great significance. In this work, two pairs of CPL-active homochiral metal-organic frameworks (MOFs) P/M-Et and P/M-Et(Cd) with eta topology are reported. In comparison to the reported isomorphic Zn-imidazolate MOFs P-Me and M-Me, both luminescence dissymmetry factor (g<sub>lum</sub> ) and photoluminescence quantum yields (Φ<sub>PL</sub> ) of P-Et and M-Et are largely  ...[more]

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