量子产额
荧光
化学
分子内力
光化学
光致发光
连接器
四苯乙烯
产量(工程)
蓝移
立体化学
聚集诱导发射
光电子学
材料科学
物理
冶金
操作系统
量子力学
计算机科学
作者
Zhang‐Wen Wei,Zhi‐Yuan Gu,Ravi Arvapally,Ying‐Pin Chen,Roy N. McDougald,Joshua F. Ivy,Andrey A. Yakovenko,Dawei Feng,Mohammad A. Omary,Hong‐Cai Zhou
摘要
We demonstrate that rigidifying the structure of fluorescent linkers by structurally constraining them in metal–organic frameworks (MOFs) to control their conformation effectively tunes the fluorescence energy and enhances the quantum yield. Thus, a new tetraphenylethylene-based zirconium MOF exhibits a deep-blue fluorescent emission at 470 nm with a unity quantum yield (99.9 ± 0.5%) under Ar, representing ca. 3600 cm–1 blue shift and doubled radiative decay efficiency vs the linker precursor. An anomalous increase in the fluorescence lifetime and relative intensity takes place upon heating the solid MOF from cryogenic to ambient temperatures. The origin of these unusual photoluminescence properties is attributed to twisted linker conformation, intramolecular hindrance, and framework rigidity.
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