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Fabrication of Silver Nanoparticle-Embedded Polymer Promoted by Combined Photochemical Properties of a 2,7-Diaminofluorene Derivative Dye

机译:2,7-二氨基芴衍生物染料的组合光化学性质促进银纳米粒子包裹聚合物的制备

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摘要

A one step method for the fabrication of silver nanoparticle-embedded polymer is detailed from the mechanistic aspects to the structural analysis of the material. A 2,7-diaminofluorene derivative is employed both as a photoreductant agent of silver precursors and as a free radical photoinitiator to produce silver nanoparticles in a poly(ethylene glycol) matrix at the same time. Each photophysical mechanism is separately investigated and quantified by steady state and time-resolved spectroscopy. The analysis confirms the key role the dye radical cation in the photopolymerization. Moreover, the addition of an amine co-initiator induces a clear acceleration of the photopolymerization rate and leads to a new distinctive mechanism. As a consequence, the morphology of the resultant silver nanocomposite exhibits different size distributions characterized by transmission electron microscopy. This structural observation was also correlated by an unexpected metal-enhancement fluorescence process arising from residual dyes entrapped in the metal-polymer.
机译:从机械方面到材料的结构分析,详细介绍了一种制备嵌入银纳米粒子的聚合物的一步法。 2,7-二氨基芴衍生物既用作银前体的光还原剂,又用作自由基光引发剂,以同时在聚乙二醇基质中生产银纳米颗粒。通过稳态和时间分辨光谱对每种光物理机制进行单独研究和量化。分析证实了染料自由基阳离子在光聚合中的关键作用。此外,胺共引发剂的加入引起光聚合速率的明显加速并导致新的独特机理。结果,所得的银纳米复合材料的形态表现出通过透射电子显微镜表征的不同的尺寸分布。该结构观察还与由残留在金属聚合物中的残留染料引起的意外的金属增强荧光过程相关。

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