Liu Qian, Wu Qi-Long, Nie Man-Xiu, Zhang Da-Shuai, Zhao Jiong-Peng, Liu Fu-Chen
School of Chemistry and Chemical Engineering, Tianjin Key Laboratory of Organic Solar Cells and Photochemical Conversion, Tianjin University of Technology Tianjin 300384 China
College of Chemistry and Chemical Engineering, Dezhou University Dezhou 253023 P. R. China.
RSC Adv. 2019 May 17;9(27):15265-15268. doi: 10.1039/c9ra01763a. eCollection 2019 May 14.
In this study, we have proposed an ion regulation strategy to assemble a white-light-emitting material with high stability and efficiency. A fluorescence tunable hybrid material was first fabricated by a "ship around the bottle" method in which the fluorescent dyes, disodium 2-naphthol-3,6-disulfonate (R) and ZnO Quantum Dots (QDs), were embedded into metal-organic frameworks (MOFs) in proportion. Then, the competition coordination of aluminium ions over zinc ions to R were utilized to subtly adjust the intensity of blue fluorescence, leading to an ideal white light with Commission Internationale de l'Eclairage (CIE) coordinates of (0.30, 0.33) and a high Color-Rendering Index (CRI) value of 93%. Compared with the material fabricated by the ratio tuning of the R salt and ZnO QDs directly, the ions regulation strategy enabled the final product to have a higher quantum efficiency and light stability. Moreover, this strategy also settled the non-tunable problem of fluorescence due to the competition coordination effects of aluminium ions and zinc ions in the same synthetic system. This synthetic strategy and our new findings can provide more ideas for designing new white-light-emitting materials.
在本研究中,我们提出了一种离子调控策略,以组装具有高稳定性和高效率的白色发光材料。首先通过“瓶中造船”法制备了一种荧光可调杂化材料,其中荧光染料2-萘酚-3,6-二磺酸钠(R)和ZnO量子点(QDs)按比例嵌入金属有机框架(MOFs)中。然后,利用铝离子对锌离子与R的竞争配位作用,巧妙地调节蓝色荧光强度,得到了国际照明委员会(CIE)坐标为(0.30, 0.33)、显色指数(CRI)高达93%的理想白光。与直接通过调节R盐和ZnO量子点比例制备的材料相比,离子调控策略使最终产物具有更高的量子效率和光稳定性。此外,该策略还解决了由于铝离子和锌离子在同一合成体系中的竞争配位效应导致的荧光不可调问题。这种合成策略和我们的新发现可为设计新型白色发光材料提供更多思路。