首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >White-light-emitting lanthanide and lanthanide-iridium doped supramolecular gels: modular luminescence and stimuli-responsive behaviour
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White-light-emitting lanthanide and lanthanide-iridium doped supramolecular gels: modular luminescence and stimuli-responsive behaviour

机译:白光发光镧系元素和镧系元素掺杂的超分子凝胶:模块化发光和刺激响应行为

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Light-emitting materials are of significant interest owing to their potential applications in electroluminescent devices/displays and sensors. Herein, light-emitting metallogel systems are developed using self-assembled Ln(III)-complexes (Ln(III) = Eu(III) and Tb(III)) of 4'-p-fluorophenyl-2,2':6',2 ''-terpyridine (L-F) and 4'-p-chlorophenyl-2,2':6',2 ''-terpyridine (L-Cl) ligands. The luminescence of these metallogels could be tuned over a wide spectrum. Near-white light emission (CIE coordinates: (0.31, 0.36) and (0.34, 0.36)) was achieved by controlling the [L-X] (X = F, Cl)/[Eu(III)]/[Tb(III)] stoichiometry. Adopting an alternate strategy, near white light emission was also achieved using metallogels derived from Eu center dot L-F-Ir (CIE coordinates: 0.28, 0.35) and Eu center dot L-Cl-Ir (CIE coordinates: 0.31, 0.35). For this, a blue emissive [Ir-III(F(2)ppy)(2)(biimid)]PF6 complex was used along with Eu(III)-terpyridine gel systems (red emissive component). Eu center dot L-F, Tb center dot L-F and Eu center dot L-F-Ir (1 wt%) could also be incorporated into a poly(methyl methacrylate) (PMMA) polymer matrix for developing transparent red, green and white luminescent PMMA films with excellent UV-shielding properties. Being colourless to the naked eye and luminescent on exposure to UV-irradiation, such metallogels have the potential to be used as an invisible security ink. Moreover, the dynamic nature of Ln-N(terpyridine) coordination bonds was utilized for demonstrating the chemo/vapor-responsive behaviour of the lanthanide-based gel systems, which could offer a suitable pathway for future engineering of stimuli-responsive gel materials.
机译:由于它们在电致发光器件/显示器和传感器中的潜在应用,发光材料具有重要兴趣。在此,使用4'-P-氟苯烯基-2,2':6'的自组装LN(III)录取(LN(III)= EU(III)和TB(III))开发发光标准凝胶系统。 ,2''' - 吡啶(LF)和4'-p-氯苯基-2,2':6',2'' - 吡啶(L-Cl)配体。这些标志内板的发光可以在宽的光谱上进行调谐。近白光发射(CIE坐标:(0.31,0.36)和(0.34,0.36))通过控制[LX](X = F,CL)/ [EU(III)] / [TB(III)]实现。化学计量。采用替代策略,使用源自欧盟中心点L-F-IR的金属凝胶(CIE坐标:0.28,0.35)和EU中心点L-CL-IR(CIE坐标:0.31,0.35),也实现了近白光发射的替代策略。为此,使用蓝色发射[IR-III(F(2)ppy)(2)(Biimid)] PF6复合物以及Eu(III)替酯凝胶系统(红色发射组分)。 EU中心点LF,TB中心点LF和EU中心点LF-IR(1wt%)也可以掺入聚(甲基丙烯酸甲酯)(PMMA)聚合物基质中,用于显影透明的红色,绿色和白色发光PMMA薄膜,具有优异的紫外线屏蔽性能。在暴露于紫外线照射时无色到肉眼和发光,这种金属凝胶具有用作隐形安全墨水的可能性。此外,利用LN-N(Terpyridine)配位键的动态性质用于证明基于镧系元素的凝胶系统的化疗/蒸气响应性能,其可以为未来的刺激响应凝胶材料工程提供合适的途径。

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