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首页> 外文期刊>Solid State Communications >Quadratic electro-optic effect in a nano-optical material based on the nonconjugated conductive polymer, poly(ethylenepyrrolediyl) derivative
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Quadratic electro-optic effect in a nano-optical material based on the nonconjugated conductive polymer, poly(ethylenepyrrolediyl) derivative

机译:基于非共轭导电聚合物,聚(亚乙基吡咯二基)衍生物的纳米光学材料中的二次电光效应

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We report the results of optical absorption, quadratic electro-optic and electroabsorption measurements in a novel nano-optical material based on the nonconjugated conductive polymer, poly(ethylenepyrrolediyl) derivative. Two peaks at about 310 and 420 nm have been observed in the optical absorption spectrum of the polymer at a low doping level of iodine. The Kerr constant as determined at 633 nm, which is close to resonance, is about 1.2 × 10~(-9) m/V~2 which is about 495 times that of nitrobenzene. This exceptionally large Kerr coefficient has been attributed to the special structure and quantum confinement of this electronic system within a subnanometer domain.
机译:我们报告基于非共轭导电聚合物,聚(乙烯吡咯二基)衍生物的新型纳米光学材料中的光吸收,二次电光和电吸收测量结果。在碘的低掺杂水平下,在聚合物的光吸收光谱中观察到约310和420nm的两个峰。在633 nm处确定的Kerr常数接近共振,约为1.2×10〜(-9)m / V〜2,约为硝基苯的495倍。这种异常大的Kerr系数归因于该电子系统在亚纳米范围内的特殊结构和量子限制。

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