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Improved quantum dot sensitized photorefractive polymer composite

机译:改进的量子点敏化光折变聚合物复合材料

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摘要

Quantum dots have significant potential as photosensitizers with a range of possible surface structures and a variety of materials available. Quantum dots composed of a cadmium selenide (CdSe) core and a cadmium sulfide (CdS) shell have been combined with poly(N-vinylcarbazole) and electro-optic dye molecules to form a new photorefractive composite. The photorefractive nature of the material was demonstrated with a gain of 4 cm~(-1) in s-polarized asymmetric two-beam coupling. The photosensitizing ability of CdS nanoparticles in a photorefractive polymer composite has been previously only evident for larger applied fields. The diffraction efficiency of the current composite is a vast improvement over the quantum dot composite reported previously, with degenerate four-wave mixing yielding diffraction of 1.3% at 70V/M. Analysis of the field-dependence of the space-charge field rise time reveals a zero-field dissociation efficiency of (3.6+-0.5)x10~(-5). Other example quantum dot sensitizers are also under investigation.
机译:量子点作为具有多种可能的表面结构和多种可用材料的光敏剂具有巨大的潜力。由硒化镉(CdSe)核和硫化镉(CdS)壳组成的量子点已与聚(N-乙烯基咔唑)和电光染料分子结合,形成了一种新的光折变复合材料。该材料的光折射特性在s极化不对称两光束耦合中获得了4 cm〜(-1)的增益。以前仅在较大的应用领域中才证明了光折变聚合物复合材料中CdS纳米粒子的光敏能力。目前的复合材料的衍射效率比以前报道的量子点复合材料有了很大的提高,简并的四波混合在70V / M时产生了1.3%的衍射。分析了空间电荷场上升时间的场相关性,发现零场解离效率为(3.6 + -0.5)x10〜(-5)。其他示例量子点敏化剂也在研究中。

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