Precision printing and optical modeling of ultrathin SWCNT/C60 heterojunction solar cells

Nanoscale
Sarah L GuillotJeffrey L Blackburn

Abstract

Semiconducting single-walled carbon nanotubes (s-SWCNTs) are promising candidates as the active layer in photovoltaics (PV), particularly for niche applications where high infrared absorbance and/or semi-transparent solar cells are desirable. Most current fabrication strategies for SWCNT PV devices suffer from relatively high surface roughness and lack nanometer-scale deposition precision, both of which may hamper the reproducible production of ultrathin devices. Additionally, detailed optical models of SWCNT PV devices are lacking, due in part to a lack of well-defined optical constants for high-purity s-SWCNT thin films. Here, we present an optical model that accurately reconstructs the shape and magnitude of spectrally resolved external quantum efficiencies for ultrathin (7,5) s-SWCNT/C60 solar cells that are deposited by ultrasonic spraying. The ultrasonic spraying technique enables thickness tuning of the s-SWCNT layer with nanometer-scale precision, and consistently produces devices with low s-SWCNT film average surface roughness (Rq of <5 nm). Our optical model, based entirely on measured optical constants of each layer within the device stack, enables quantitative predictions of thickness-dependent relative photocurrent...Continue Reading

References

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Citations

Jan 13, 2016·The Journal of Physical Chemistry Letters·Philip SchulzJoseph Berry
Apr 30, 2016·The Journal of Physical Chemistry Letters·Anne-Marie DowgialloJeffrey L Blackburn
Aug 28, 2020·Physical Chemistry Chemical Physics : PCCP·Jia-Jia YangGanglong Cui
Aug 8, 2018·The Journal of Physical Chemistry Letters·Lenore KubieBruce A Parkinson
Nov 21, 2018·The Journal of Physical Chemistry Letters·Andrew J FergusonJeffrey L Blackburn

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