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Embedding of electroluminescent ZnS : Cu phosphors in PMMA matrix by polymerization of particle suspension in MMA monomer

机译:粒子悬浮在MMA单体中的聚合将电致发光的ZnS:Cu荧光粉嵌入PMMA基质

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摘要

Alternating current powder electroluminescent lamps (ACPELs) were produced by UV initiated polymerization of liquid methylmethacrylate (MMA) monomer containing a ZnS:Cu phosphor powder dispersion. This method is suitable for the formation of a compact and void-free polymer matrix that limits water diffusion thus preventing the consequent corrosion of particles and luminescence quenching. A lamp was built up by sticking aluminum and indium tin oxide (ITO) electrodes by using the pre-polymerized MMA/ZnS:Cu dispersion as a UV-curable glue. Dispersions were prepared by mixing the dry powder with MMA monomer activated with 2% weight of the photoinitiator Ciba Irgacure 184 UV and by pre-polymerization under stirring with a 125W mercury lamp. Due to the high content of powder necessary to produce a bright lamp (1:1 weight of ZnS:Cu in MMA), a high viscosity slurry obtained with a 30 min pre-polymerization was required to maintain suspended the large size (tenths of mum) commercial phosphors. The polymerization process as a function of the irradiation time was investigated by FT-IR on films prepared by sticking two NaCl windows. The intensity decrease of the C=C band at 1640cm(-1) indicates that polymerization is complete after 10 min irradiation. Electrical and spectroscopic characterization of the lamp was performed by analysis of luminescence spectra and determination of the current flowing in the circuit at different feeding voltages and frequencies. This preliminary investigation shows that UV polymerization of phosphor/monomer dispersions is a promising route for an easy and cheap production of ACPELs. (C) 2004 Elsevier B.V. All rights reserved.
机译:交流电粉末电致发光灯(ACPEL)是通过UV引发的含有ZnS:Cu磷光体粉末分散体的液态甲基丙烯酸甲酯(MMA)单体的聚合而生产的。该方法适合于形成致密且无空隙的聚合物基体,该基体限制了水的扩散,从而防止了随之而来的颗粒腐蚀和发光猝灭。使用预聚合的MMA / ZnS:Cu分散液作为UV固化胶,通过粘贴铝和铟锡氧化物(ITO)电极来构建灯。通过将干燥粉末与用2%重量的光引发剂Ciba Irgacure 184 UV活化的MMA单体混合并在125W汞灯的搅拌下进行预聚合来制备分散液。由于生产高亮度灯所需的粉末含量很高(在MMA中ZnS:Cu的重量为1:1,所以需要30分钟的预聚合反应才能获得高粘度的浆料,以保持大尺寸的悬浮液(十分之几) )商业荧光粉。通过FT-IR在通过粘贴两个NaCl窗口制备的薄膜上研究了聚合过程随辐照时间的变化。 C = C带在1640cm(-1)处的强度降低表明辐照10分钟后聚合完成。通过分析发光光谱并确定在不同馈电电压和频率下电路中流动的电流,可以对灯进行电学和光谱学表征。该初步研究表明,磷光体/单体分散体的紫外线聚合是一种简便,廉价地生产ACPEL的有前途的途径。 (C)2004 Elsevier B.V.保留所有权利。

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