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Optical Properties of Polymer-Embedded Silicon Nanoparticles

机译:聚合物嵌入式硅纳米粒子的光学性质

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We seek to use electrically conducting polymers, such as those commonly utilized in polymeric LEDs, as hosts for silicon nanoparticles. The proper design of multilayered devices based on these materials will yield efficient light-emitters in which charge carriers localize and recombine within the nanoparticles. Furthermore, these may combine the flexibility and processability of polymeric LEDs with the reliability of inorganic materials. We have synthesized luminescent silicon nanoparticles and have characterized their photoluminescence (PL) using continuous-wave and time-resolved spectroscopy. These particles have been incorporated into a variety of transparent solid hosts. The photoluminescence obtained from particle-containing poly(methyl methacrylate) (PMMA) matrices is very similar to that of the particles in solution, both in spectral content and PL decay characteristics. However, when incorporated into a variety of conducting polymers, such as poly(N-vinylcarbazole) (PVK), the nanoparticles do not retain their photoluminescence properties. A variety of chemical species have been reported as effective PL quenchers for porous silicon. We believe that these polymers quench the luminescence through similar mechanisms. Protective passivation of the nanoparticle surface is suggested as a strategy for overcoming this quenching.
机译:我们寻求使用导电聚合物,例如在聚合物LED中通常用于聚合物LED的那些,作为硅纳米颗粒的宿主。基于这些材料的多层装置的适当设计将产生有效的光发射器,其中电荷载流子定位和重组纳米颗粒内。此外,这些可以将聚合物LED的灵活性和加工性与无机材料的可靠性结合起来。我们具有合成的发光硅纳米颗粒,并使用连续波和时间分辨光谱表征它们的光致发光(PL)。这些颗粒已被掺入各种透明的固体宿主中。从含颗粒的聚(甲基丙烯酸甲酯)(PMMA)基质中获得的光致发光与溶液中的溶液中的颗粒的光致发光非常相似,包括光谱含量和PL衰减特性。然而,当掺​​入各种导电聚合物中时,例如聚(N-乙烯基咔唑)(PVK),纳米颗粒不保留其光致发光性质。已经报告了各种化学物质作为多孔硅的有效PL猝灭剂。我们认为这些聚合物通过类似的机制淬火发光。建议纳米颗粒表面的保护性钝化作为克服这种猝灭的策略。

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