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Efficiency enhancement of small molecule organic solar cells using hexapropyltruxene as an interface layer

机译:使用Hexapropyltupy作为界面层的小分子有机太阳能电池效率提高

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The quenching of excitons in organic solar cells can play a significant role in limiting their power conversion efficiency (PCE). In this article, we investigate the effect of a thin layer of hexapropyltruxene inserted at the interface between the electron donor boron subphthalocyanine chloride (SubPc) and its underlying hole contact in planar heterojunction solar cells. We find that a 3.8 nm hexapropyltruxene interlayer between the molybdenum oxide (MoOx) hole contact and SubPc is sufficient to improve PCE in SubPc/C-60 fullerene solar cells from 2.6% to 3.0%, a similar to 20% performance improvement. While the absorption stays roughly the same, the comparison of external and internal quantum efficiencies reveals a significant increase in SubPc's contribution to the current for light with wavelengths between 520 and 600 nm. Microstructure and surface morphology assessed with in situ Grazing-Incidence Wide-Angle X-Ray Scattering (GIWAXS) and Atomic Force Microscopy (AFM), are evaluated alongside in situ spectroscopic ellipsometry, and photoluminescence measurements. The microstructural investigations demonstrate changes to the surface and bulk of SubPc grown atop a hexapropyltruxene interlayer indicating that the latter acts as a template layer in a similar way as MoOx. However, the improvement in PCE is found to be mainly via reduced exciton quenching at the MoOx contact with the insertion of the hexapropyltruxene layer.
机译:在有机太阳能电池中的激子淬火可以在限制其功率转换效率(PCE)时起着重要作用。在本文中,我们研究了插入电子给体硼苯酞菁氯化物(Subpc)之间的界面的薄层​​薄层的六己二酰磺酮的效果及其在平面异质结太阳能电池中的下面的孔接触。我们发现氧化钼(MOOX)孔触点和Subpc之间的3.8nm Hexapropyltu杂交层,足以将Subc / C-60富勒烯太阳能电池中的PCE从2.6%增加到3.0%,类似于20%的性能改善。虽然吸收保持大致相同,但外部和内部量子效率的比较揭示了Subpc对电流的贡献显着增加,其中光的电流具有520和600nm之间的波长。用原位放牧发生宽角X射线散射(GIWaxs)和原子力显微镜(AFM)评估的微观结构和表面形态被同在原位光谱椭圆形测定法和光致发光测量。微观结构研究表明,在六己二丙基杂交中间层上生长的亚磷胶的表面和大量的变化,表明后者以与MOOX类似的方式用作模板层。然而,发现PCE的改善主要通过在MOOX与六己二酮层的插入的插入中的MOOX接触时通过降低的激子猝灭。

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