首页> 外文期刊>Journal of Applied Physics >Vapor-phase deposition of regioregular and oriented poly(3-hexylthiophene) structures and novel nanostructured composites of interpenetrating poly(3-hexylthiophene) and poly aniline exhibiting full-color wavelength (400-1000 nm) photoluminescence
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Vapor-phase deposition of regioregular and oriented poly(3-hexylthiophene) structures and novel nanostructured composites of interpenetrating poly(3-hexylthiophene) and poly aniline exhibiting full-color wavelength (400-1000 nm) photoluminescence

机译:规整和定向的聚(3-己基噻吩)结构的气相沉积和互穿的聚(3-己基噻吩)和聚苯胺的新型纳米结构复合物,具有全色波长(400-1000 nm)光致发光

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摘要

A promising solvent-free technique of electron-beam-assisted vapor-phase codeposition method is presented which allows uniform blending of different conjugated and nonconjugated polymers at the nanoscale. The technique allows direct incorporation of regioregular poly(3-hexylthiophene) (P3HT) polymer with different structural orientations into conventional and semiconducting polymers without fractionation or degradation of P3HT while maintaining the nanoscale morphology of deposited organic films. The results of fabricated novel nanostructured organic composites (~100-200 nm) comprising regioregular and oriented P3HT and different conjugated and nonconjugated polymers including selective assembly of P3HT nanonodules into a copolymer template are presented. We show a typical example of blending of P3HT and polyaniline (PANI) that formed a unique nanoscale morphology comprising interpenetrating networks of different shapes and sizes of nanospherulites (~100nm) of P3HT in PANI. The so fabricated nanocomposites (~200 nm) exhibited remarkable broadband photoluminescence features covering the entire blue, green, and red wavelength regions between 400 and 1000 nm. Such organic nanocomposites might be useful for flexible full-color screen flat panel displays and organic white-light solid-state lighting applications.
机译:提出了一种有前途的无溶剂电子束辅助气相共沉积法技术,该技术可以在纳米级均匀共混不同的共轭和非共轭聚合物。该技术允许将具有不同结构取向的区域规则的聚(3-己基噻吩)(P3HT)聚合物直接掺入常规和半导体聚合物中,而无需分馏或降解P3HT,同时保持沉积的有机薄膜的纳米级形态。给出了制备的新型纳米结构有机复合物(〜100-200 nm)的结果,该复合物包含区域规则和定向的P3HT以及不同的共轭和非共轭聚合物,包括将P3HT纳米结节选择性组装成共聚物模板。我们展示了P3HT和聚苯胺(PANI)混合的典型示例,该混合物形成了独特的纳米级形态,包括PANI中P3HT纳米球体(〜100nm)的不同形状和大小的互穿网络。如此制成的纳米复合材料(〜200 nm)显示出显着的宽带光致发​​光特征,覆盖了400至1000 nm之间的整个蓝色,绿色和红色波长区域。此类有机纳米复合材料可能对柔性全彩屏幕平板显示器和有机白光固态照明应用有用。

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