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A New Anthracene-based Small Molecule as Cathode Interlayer for Efficient Polymer Solar Cells

机译:新型蒽基小分子作为高效聚合物太阳能电池的阴极中间层

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摘要

A new small molecule with excellent electron-transporting property, namely 9,10-bis(2-(N-octyl-1,8-naphthalimid-4-yl)ethynyl)anthracene (BNA), is prepared and characterized. A polymer solar cell (PSC) based on poly (3-hexylthiophene) (P3HT) and [6,6]-phenylC(61)-butyricacidmethyl ester (PC61BM) is also fabricated by using BNA as the cathode buffer layer between the Al electrode and photoactive layer, and their influence on the performance of the PSCs is investigated. It is found that the open-circuit voltage (V-oc), short-circuit current density (J(sc)), and power conversion efficiency (PCE) of a device with a 6-nm BNA layer improved to 0.63 V, 9.74 mA/cm(2), and 3.74%, respectively, which correspond to an increase of 53.6%, 38.0%, and 177% compared to those without the buffer layer. The BNA buffer layer could effectively improve the interfacial contact performance between the Al electrode and photoactive layer, decrease the series resistance, and improve the collection efficiency of carriers. The devices with appropriate thickness of the BNA buffer layer can also replace the common low-work-function metal Ca for increasing the PCE and lifetime of PSCs.
机译:制备并表征了一种新型的具有优异电子传输性能的小分子,即9,10-双(2-(N-辛基-1,8-萘二甲酰亚胺-4-基)乙炔基)蒽(BNA)。还通过使用BNA作为Al电极之间的阴极缓冲层来制造基于聚(3-己基噻吩)(P3HT)和[6,6]-苯基C(61)-丁酸甲酯(PC61BM)的聚合物太阳能电池(PSC)。以及光敏层及其对PSC性能的影响。发现具有6nm BNA层的器件的开路电压(V-oc),短路电流密度(J(sc))和功率转换效率(PCE)分别提高到0.63 V,9.74 mA / cm(2)和3.74%,分别比没有缓冲层的增加了53.6%,38.0%和177%。 BNA缓冲层可有效改善铝电极与光敏层之间的界面接触性能,降低串联电阻,提高载流子的收集效率。具有适当厚度的BNA缓冲层的器件还可以替代常见的低功函数金属Ca,以增加PCE和PSC的寿命。

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