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Enhancement of interfacial polymer crystallinity using chromism in single inorganic nanowire-polymer nanohybrids for photovoltaic applications

机译:在光伏应用中的单个无机纳米线-聚合物纳米杂化物中使用变色作用增强界面聚合物的结晶度

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Interfaces play an important role in bulk heterojunction organic/inorganic hybrid photovoltaic devices, but directly probing the interface in order to improve device characteristics is exceedingly difficult. We report on a method to form core-shell inorganic nanowire-polymer hybrids of a conducting polymer, poly(3-hexlthiophene-2,5-diyl) (P3HT), and a semiconducting nanowire, cadmium sulfide (CdS), using solution processing to create the polymer shell around the nanowire in order to study the polymer-nanowire interface directly without interference from bulk effects. We have used the rod-coil transition (chromism) in P3HT to seed and enhance the crystallinity at the polymer-nanowire interface. We have shown that creating more order within the P3HT main chain, by controlling the temperature and the solvent quality, can increase the extent of polymer crystallinity present at the polymer-nanowire interface. We believe using the rod-coil transition to create more order in P3HT and the resulting polymer-nanowire interface will provide a facile pathway for designing future organic-inorganic photovoltaic devices.
机译:界面在块状异质结有机/无机混合光伏器件中起着重要的作用,但是直接探测界面以改善器件特性非常困难。我们报告了一种使用溶液处理方法形成导电聚合物,聚(3-己噻吩-2,5-二基)(P3HT)和半导体纳米线,硫化镉(CdS)的核-壳无机纳米线-聚合物杂化体的方法。在纳米线周围创建聚合物壳,以便直接研究聚合物-纳米线界面,而不受本体效应的干扰。我们已使用P3HT中的棒-线圈过渡(变色)来播种并增强聚合物-纳米线界面的结晶度。我们已经表明,通过控制温度和溶剂质量,在P3HT主链中建立更多的顺序可以增加存在于聚合物-纳米线界面上的聚合物结晶度。我们相信,使用杆-线圈过渡在P3HT中创建更多顺序,并且所得的聚合物-纳米线界面将为设计未来的有机-无机光伏器件提供方便的途径。

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