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首页> 外文期刊>Current applied physics: the official journal of the Korean Physical Society >PPV/PVA/ZnO nanocomposite prepared by complex precursor method and its photovoltaic application
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PPV/PVA/ZnO nanocomposite prepared by complex precursor method and its photovoltaic application

机译:复合前驱体法制备PPV / PVA / ZnO纳米复合材料及其光伏应用

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摘要

In this article, we describe a new method to prepare a ZnO and conjugated polymer nanocomposite and its application in bulk-heterojunction solar cells. The composite was composed of zinc oxide (ZnO) and poly(phenylene vinylene)/poly(vinyl alcohol) (PPV/PVA). For the preparation, the composite was prepared first through the complex reaction between Zn2+ ion and -OH of the PVA-PPV precursor by simply mixing zinc salts and a PVA-PPV precursor aqueous solution at 70 degrees C. By addition of a concentrated aqueous ammonia into the system, highly regular Zn(OH)(2) nanodots were formed and dispersed in the PVA/PPV precusor mixed solution. The PVA/PPV precursor can well bind Zn2+ ion through complex interaction, so act as a template to direct the distribution of ZnO in the process. The nanocomposite films were finally obtained by Solution casting and subsequently treated by heating samples at 160 degrees C for 6 h. TEM observations showed that ZnO nanodots uniformly dispersed in PVA-PPV mixtures. The resulting nanocomposite films possess a large interfacial area between the electron donor and acceptor of the bulk-heterojunction. Improved charge seperation and collection are evidenced by the large photoluminescence intensity difference between pure PPV and composites films., which result in the increase in both open circuit voltage and short circuit current of the hybrid solar cells.
机译:在本文中,我们描述了一种制备ZnO和共轭聚合物纳米复合材料的新方法及其在体异质结太阳能电池中的应用。该复合材料由氧化锌(ZnO)和聚苯撑亚乙烯基/聚乙烯醇(PPV / PVA)组成。为了制备,首先通过在70℃下简单地将锌盐和PVA-PPV前体水溶液混合,通过Zn 2+离子与PVA-PPV前体的-OH之间的络合反应来制备复合物。进入系统后,形成高度规则的Zn(OH)(2)纳米点并分散在PVA / PPV前体混合溶液中。 PVA / PPV前体可以通过复杂的相互作用很好地结合Zn2 +离子,因此可以作为指导ZnO在此过程中分布的模板。最终通过溶液流延获得纳米复合膜,随后通过在160℃下加热样品6小时进行处理。 TEM观察表明,ZnO纳米点均匀地分散在PVA-PPV混合物中。所得的纳米复合膜在体-异质结的电子供体和受体之间具有较大的界面面积。纯PPV和复合膜之间的巨大的光致发光强度差异证明了电荷的分离和收集得到了改善,这导致了混合太阳能电池的开路电压和短路电流的增加。

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