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首页> 外文期刊>Advanced Functional Materials >Nanoporous Silver Thin Films: Multifunctional Platforms for Influencing Chain Morphology and Optical Properties of Conjugated Polymers
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Nanoporous Silver Thin Films: Multifunctional Platforms for Influencing Chain Morphology and Optical Properties of Conjugated Polymers

机译:纳米多孔银薄膜:影响共轭聚合物链形态和光学性能的多功能平台

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Disordered nanoporous silver (NPAg) thin films fabricated by a thermally assisted dewetting method are employed as a platform to influence chain alignment, morphology, and optical properties of three well-known conjugated polymers. Grazing-incidence wide-angle X-ray scattering (GIWAXS) measurements show that the porous structure of the metal induces close - stacking of poly(3-hexylthiophene) (P3HT) chains and extended, planar chain conformations of poly(9,9-di-n-octylfluorenyl-2,7-diyl) (PFO) and poly[(9,9-di-n-octylfluorenyl-2,7-diyl)-alt-(benzo[2,1,3]thiadiazol-4,8-diyl)] (F8BT). A greater degree of vertically-oriented P3HT chains are found on NPAg compared with planar Ag. However, PFO and F8BT chain alignment is only affected when pore size is large. The optical properties of NPAg films are investigated by transmission and back-scattering spectroscopies. Strong back-scattering is observed for all NPAg morphologies, especially for NPAg with small pore sizes. Photoluminescence spectroscopy of conjugated polymer layers on NPAg showed pronounced emission enhancements (up to factors of 26) relative to layers on glass. The enhancements are attributed primarily to: 1) redistribution of conjugated polymer emission by Ag; 2) redirection of emission by polymer-filled nanopores; and 3) local electromagnetic field effects. This work demonstrates the potential of NPAg-thin films to influence molecular chain morphology and to improve light-extraction in organic optoelectronic devices.
机译:通过热辅助去湿法制备的无序纳米多孔银(NPAg)薄膜用作影响三种已知共轭聚合物的链排列,形态和光学性质的平台。掠入射广角X射线散射(GIWAXS)测量表明,金属的多孔结构引起聚(3-己基噻吩)(P3HT)链的紧密堆积和聚(9,9-二正辛基芴基-2,7-二基)(PFO)和聚[(9,9-二正辛基芴基-2,7-二基)-alt-(苯并[2,1,3]噻二唑-4 ,8-二基)](F8BT)。与平面Ag相比,在NPAg上发现了更大程度的垂直取向的P3HT链。但是,仅当孔径较大时,才会影响PFO和F8BT链的排列。通过透射和反向散射光谱研究了NPAg薄膜的光学性能。在所有NPAg形态下都观察到强烈的反向散射,特别是对于小孔径的NPAg。相对于玻璃上的层,NPAg上的共轭聚合物层的光致发光光谱显示出显着的发射增强(最高达26倍)。增强主要归因于:1)通过Ag重新分布共轭聚合物发射; 2)通过聚合物填充的纳米孔重定向发射; 3)局部电磁场效应。这项工作证明了NPAg薄膜的潜力影响分子链的形态并改善有机光电器件的光提取。

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