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Soluble functional polyacetylenes for optical limiting: Relationship between optical limiting properties and molecular structure

机译:用于光学限制的可溶性功能性聚乙炔:光学限制性质与分子结构之间的关系

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摘要

Four polyacetylenes containing chromophores with different conjugation bridge structure or terminal substituents were designed and prepared by using [Rh(nbd)Cl](2) as catalysts, respectively. Their structures and properties were characterized and evaluated by IR, NMR, UV, TGA, optical limiting and nonlinear optical analyses. All the polymers show high thermal and photo stability and novel optical limiting properties. The functional polyacetylene with stilbene pendant shows better optical limiting property than that with azobenzene chromophore pendant. Their optical limiting mechanisms are mainly originated from reverse saturable absorption of molecules. Their nonlinear optical properties are significantly affected by their molecular structures and the shorter spacer group will be beneficial in increasing the electronic interaction between chromophore pendant and polyacetylene conjugation backbone to result in higher third-order optical nonlinearity. (c) 2008 Elsevier Ltd. All rights reserved.
机译:以[Rh(nbd)Cl](2)为催化剂,分别设计和制备了四种具有不同共轭桥结构或末端取代基的发色团的聚乙炔。通过IR,NMR,UV,TGA,光学限幅和非线性光学分析对它们的结构和性质进行了表征和评估。所有聚合物均显示出高的热稳定性和光稳定性以及新颖的光学限制性能。具有二苯乙烯侧基的官能聚乙炔比具有偶氮苯生色团侧基的聚乙炔具有更好的光学限制性能。它们的光学限制机制主要源自分子的反向饱和吸收。它们的非线性光学性质受到其分子结构的显着影响,较短的间隔基团将有利于增加生色团侧基与聚乙炔共轭骨架之间的电子相互作用,从而导致更高的三阶光学非线性。 (c)2008 Elsevier Ltd.保留所有权利。

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