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首页> 外文期刊>RSC Advances >Polypyrrole: FeOx center dot ZnO nanoparticle solar cells with breakthrough open-circuit voltage prepared from relatively stable liquid dispersions
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Polypyrrole: FeOx center dot ZnO nanoparticle solar cells with breakthrough open-circuit voltage prepared from relatively stable liquid dispersions

机译:聚吡咯:由相对稳定的液体分散体制备的具有突破性开路电压的FeOx中心点ZnO纳米颗粒太阳能电池

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摘要

Organic hybrid solar cells with a large open-circuit voltage, up to above that of 1.5 V standard battery voltage, were demonstrated using blends of polypyrrole: Fe2O3 center dot ZnO nanoparticles as active-layers. The cell active-layers were readily coated in open air from relatively stable liquid dark-color polypyrrole-based dispersions, which were synthesized using appropriate surfactants during the in situ polymerization of pyrrole with FeCl3 or both H2O2 and FeCl3 as the oxidizers. The performance of the cells depends largely on the synthesized blend phase, which is determined by the surfactants, oxidizers, as well as the reactant ratio. Only the solar cells fabricated from the stable dispersions can produce both a high open-circuit voltage (>1.0 V) and short-circuit current (up to 7.5 mA cm (2)) due to the relatively uniform porous network nanomorphology and higher shunt to series resistance ratio of the active-layers. The cells also display a relatively high power-conversion efficiency of up to similar to 3.8%.
机译:使用聚吡咯∶Fe 2 O 3中心点ZnO纳米颗粒的混合物作为活性层,证明了具有高开路电压(最高高于1.5 V标准电池电压)的有机混合太阳能电池。细胞活性层很容易在露天由相对稳定的液体深色聚吡咯基分散体涂覆,该分散体是在吡咯与FeCl3或H2O2和FeCl3作为氧化剂的原位聚合过程中使用适当的表面活性剂合成的。电池的性能在很大程度上取决于合成的共混相,该相由表面活性剂,氧化剂以及反应物比率决定。由于相对均匀的多孔网络纳米形态和较高的分流,只有由稳定的分散体制成的太阳能电池才能产生高的开路电压(> 1.0 V)和短路电流(高达7.5 mA cm(2))。有源层的串联电阻比。这些电池还具有相对较高的功率转换效率,最高可达到3.8%。

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