Efficiency enhancement of small molecule organic solar cells using hexapropyltruxene as an interface layer
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 (Sub...
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Published in | Journal of materials chemistry. C, Materials for optical and electronic devices Vol. 8; no. 14; pp. 499 - 4918 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Cambridge
Royal Society of Chemistry
14.04.2020
|
Subjects | |
Online Access | Get full text |
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Summary: | 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 (MoO
x
) hole contact and SubPc is sufficient to improve PCE in SubPc/C
60
fullerene solar cells from 2.6% to 3.0%, a ∼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 MoO
x
. However, the improvement in PCE is found to be mainly
via
reduced exciton quenching at the MoO
x
contact with the insertion of the hexapropyltruxene layer.
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 was investigated. |
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Bibliography: | Electronic supplementary information (ESI) available: Efficiency enhancement of small molecule organic solar cells using hexapropyltruxene as an interface layer. See DOI 10.1039/c9tc06845g |
ISSN: | 2050-7526 2050-7534 |
DOI: | 10.1039/c9tc06845g |