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White Light Emission by Simultaneous One Pot Encapsulation of Dyes into One-Dimensional Channelled Aluminophosphate

机译:一锅同时将染料包封到一维通道磷酸铝中的白光发射

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摘要

By simultaneous occlusion of rationally chosen dyes, emitting in the blue, green and red region of the electromagnetic spectrum, into the one-dimensional channels of a magnesium-aluminophosphate with AEL-zeolitic type structure, MgAPO-11, a solid-state system with efficient white light emission under UV excitation, was achieved. The dyes herein selected—acridine (AC), pyronin Y (PY), and hemicyanine LDS722—ensure overall a good match between their molecular sizes and the MgAPO-11 channel dimensions. The occlusion was carried out via the crystallization inclusion method, in a suitable proportion of the three dyes to render efficient white fluorescence systems by means of fine-tuned FRET (fluorescence resonance energy transfer) energy transfer processes. The FRET processes are thoroughly examined by the analysis of fluorescence decay traces using the femtosecond fluorescence up-conversion technique.
机译:通过同时吸收合理选择的染料,它们在电磁波谱的蓝色,绿色和红色区域内发射到具有AEL沸石型结构的镁铝磷酸镁MgAPO-11的一维通道中,在紫外线激发下实现了有效的白光发射。本文所选择的染料-r啶(AC),吡喃蛋白酶Y(PY)和半菁LDS722-总体上确保了它们的分子大小与MgAPO-11通道尺寸之间的良好匹配。通过结晶包合方法以适当比例的三种染料进行吸合,以通过微调的FRET(荧光共振能量转移)能量转移过程提供有效的白色荧光系统。通过使用飞秒荧光上转换技术分析荧光衰减迹线,彻底检查了FRET过程。

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