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首页> 外文期刊>The Journal of Chemical Physics >Control of morphology in efficient photovoltaic diodes from discotic liquid crystals
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Control of morphology in efficient photovoltaic diodes from discotic liquid crystals

机译:从盘状液晶中控制高效光电二极管的形态

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We report on the role of morphology in photovoltaic diodes with blend active layers composed of perylene tetracarboxdiimide(EPPTC)and hexabenzocoronene(HBC)derivatives as electron and hole acceptors.Controlled annealing of HBC:EPPTC films while in conformal contact with a flat elastomeric stamp improves photovoltaic response,leading to an external quantum efficiency of 29.5% at 460 nm and an open-circuit voltage of 0.70 V.The improved performance is attributed in part to larger crystalline domains following annealing.The elastomeric stamp restricts the top surface of the thin film during annealing,leading to low surface roughness,while also allowing for greater vertical stratification of the components in the bulk.Blended HBC:EPPTC films also exhibit an unique optical absorption feature near 590 nm,which we attribute to an altered crystalline packing of EPPTC in the presence of HBC.The significance of the local structure at molecular heterojunctions in blended active layer photovoltaic diodes is discussed.
机译:我们报道了形态学在光电二极管中的作用,该光电二极管具有由ylene四碳二酰亚胺(EPPTC)和六苯并二苯并(HBC)衍生物组成的共混活性层作为电子和空穴受体.HBC:EPPTC薄膜的保形退火,同时与平坦的弹性印模共形接触可改善光伏响应,导致460 nm处的外部量子效率为29.5%,开路电压为0.70 V.性能的改善部分归因于退火后的更大晶畴。弹性体模压限制了薄膜的顶表面HBC:EPPTC混合薄膜在590 nm附近还表现出独特的光吸收特性,这归因于EPPTC的结晶堆积改变。混合活性层光伏中分子异质结处局部结构的意义讨论了二极管。

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