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Fabrication of Polydiacetylene Nanocrystals Deposited with Silver Nanoparticles for a Nonlinear Optical Material

机译:用银纳米粒子沉积的聚二乙烯纳米晶体制备用于非线性光学材料的纳米粒子

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Noble metal-coated polydiacetylene (PDA) nanocrystals are expected to enlarge effective third-order nonlinear optical susceptibility, owing to the enhancement of optical electric field induced by localized surface plasmon. The surface of PDA nanocrystals was decorated with silver nanoparticles, and the linear optical properties were investigated. The well-defined PDA nanocrystals were first prepared by the conventional reprecipitation method as an aqueous dispersion. The following two-steps of reduction methods, namely, seed deposition and seed growth, enabled higher silver coverage on the surface of PDA nanocrystals. Silver fine seeds were successfully deposited on the PDA surface by particularly employing an anionic surfactant as a binder. The extinction spectra of the PDA nanocrystals covered with silver exhibited the red-shift and broadening of surface plasmonic peak for silver nanoparticles, which would indicate the interaction among silver nanoparticles on the same PDA nanocrystal. In addition, the red-shift of excitonic peak for PDA nanocrystals was observed, resulting from the changes of dielectric properties around PDA nanocrystal. Both spectral changes would have an influence on nonlinear optical properties of PDA nanocrystal.
机译:由于局部表面等离子体诱导的光学电场增强,预期贵金属涂覆的多二乙烯(PDA)纳米晶体预期增大有效的三阶非线性光学敏感性。 PDA纳米晶体的表面用银纳米颗粒装饰,并研究了线性光学性质。通过常规的再沉淀方法作为水性分散体制备明确定义的PDA纳米晶。以下两步的还原方法,即种子沉积和种子生长,使PDA纳米晶体表面上的较高的银覆盖。通过特别用阴离子表面活性剂作为粘合剂,在PDA表面上成功沉积银细种。用银覆盖的PDA纳米晶体的消光光谱表现出银纳米粒子的表面等离子体峰的红色移位和扩大,这表明银纳米颗粒在同一PDA纳米晶体上的相互作用。此外,观察到PDA纳米晶体的激发峰的红转,由PDA纳米晶体周围的电介质性质的变化产生。两个光谱变化都会对PDA纳米晶体的非线性光学性质产生影响。

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