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Photosensized Controlling Benzyl Methacrylate-Based Matrix Enhanced Eu3+ Narrow-Band Emission for Fluorescence Applications

机译:光致控制甲基丙烯酸苄基酯基增强Eu 3 + 窄带发射用于荧光应用

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摘要

This study synthesized a europium (Eu3+) complex Eu(DBM)3Cl-MIP (DBM = dibenzoyl methane; Cl-MIP = 2-(2-chlorophenyl)-1-methyl-1H-imidazo[4,5-f][1,10]phenanthroline) dispersed in a benzyl methacrylate (BMA) monomer and treated with ultraviolet (UV) light for polymerization. Spectral results showed that the europium complex containing an antenna, Cl-MIP, which had higher triplet energy into the Eu3+ energy level, was an energetically enhanced europium emission. Typical stacking behaviors of π–π interactions between the ligands and the Eu3+-ion were analyzed using single crystal X-ray diffraction. Regarding the luminescence performance of this europium composite, the ligand/defect emission was suppressed by dispersion in a poly-BMA (PBMA) matrix. The underlying mechanism of the effective enhancement of the pure Eu3+ emission was attributed to the combined effects of structural modifications, defect emissions, and carrier charge transfer. Fluorescence spectra were compared to the composite of optimized Eu3+ emission where they were subsequently chelated to four metal ions via carboxylate groups on the BMA unit. The optical enhanced europium composite clearly demonstrated highly efficient optical responses and is, therefore a promising application as an optical detection material.
机译:这项研究合成了complex(Eu 3 + )络合物Eu(DBM) 3 Cl-MIP(DBM =二苯甲酰甲烷; Cl-MIP = 2-(2-氯苯基)将-1-甲基-1H-咪唑并[4,5-f] [1,10]菲咯啉分散在甲基丙烯酸苄酯(BMA)单体中,并用紫外线(UV)处理以进行聚合。光谱结果表明,含天线Cl-MIP的complex络合物具有更高的三重态能,进入Eu 3 + 能级,是euro的有效发射。利用单晶X射线衍射分析了配体与Eu 3 + 离子之间π-π相互作用的典型堆积行为。关于该composite复合材料的发光性能,通过分散在聚BMA(PBMA)基质中抑制了配体/缺陷的发射。有效增强Eu 3 + 发射的基本机理归因于结构修饰,缺陷发射和载流子转移的综合作用。将荧光光谱与优化的Eu3 +发射复合物进行比较,然后通过BMA单元上的羧酸根将它们螯合为四个金属离子。光学增强的composite复合材料清楚地显示出高效的光学响应,因此作为光学检测材料具有广阔的应用前景。

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