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首页> 外文期刊>ACS applied materials & interfaces >Efficient Zinc Phthalocyanine/C_(60) Heterojunction Photovoltaic Devices Employing Tetracene Anode Interfacial Layers
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Efficient Zinc Phthalocyanine/C_(60) Heterojunction Photovoltaic Devices Employing Tetracene Anode Interfacial Layers

机译:高效的酞菁锌/ C_(60)异质结光伏器件,采用四极阳极阳极界面层

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摘要

We report the development of efficient small molecular organic photovoltaic devices incorporating tetracene anode interfacial layers. Planar heterojunction devices employing the tetracene anode interfacial layer achieved an EQE enhancement of 150% in the spectral region corresponding to ZnPc absorption. We demonstrate that this enhancement is due to the combined effect of the tetracene layer providing exciton-blocking at the anode/donor interface and potentially an increase in the exciton diffusion length in the ZnPc layer due to increased crystallinity and more preferred molecular stacking orientation. A power conversion efficiency of 4.7% was achieved for a planar heterojunction of a modified zinc phthalocyanine based material and C_(60) when employing the tetracene anode interfacial layer. By utilizing a planar-mixed heterojunction structure a peak EQE of nearly 70% and a power conversion efficiency of 5.8% was achieved.
机译:我们报道了并四苯阳极界面层的高效小分子有机光伏器件的发展。采用并四苯阳极界面层的平面异质结器件在对应于ZnPc吸收的光谱区域中实现了150%的EQE增强。我们证明了这种增强是由于并四苯层在阳极/施主界面处提供激子阻挡的共同作用,以及由于结晶度增加和更优选的分子堆叠方向而导致的ZnPc层中激子扩散长度的增加。当采用并四苯阳极界面层时,改性锌酞菁基材料与C_(60)的平面异质结实现了4.7%的功率转换效率。通过利用平面混合异质结结构,可实现接近70%的峰值EQE和5.8%的功率转换效率。

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