Determining the Internal Quantum Efficiency of PbSe Nanocrystal Solar Cells with the Aid of an Optical Model
- 30 September 2008
- journal article
- Published by American Chemical Society (ACS) in Nano Letters
- Vol. 8 (11) , 3904-3910
- https://doi.org/10.1021/nl802353x
Abstract
We determine the internal quantum efficiency (IQE) of the active layer of PbSe nanocrystal (NC) back-contact Schottky solar cells by combining external quantum efficiency (EQE) and total reflectance measurements with an optical model of the device stack. The model is parametrized with the complex index of refraction of each layer in the stack as calculated from ellipsometry data. Good agreement between the experimental and modeled reflectance spectra permits a quantitative estimate of the fraction of incident light absorbed by the NC films at each wavelength, thereby yielding well-constrained QE spectra for photons absorbed only by the NCs. Using a series of devices fabricated from 5.1+/-0.4 nm diameter PbSe NCs, we show that thin NC cells achieve an EQE and an active layer IQE as high as 60+/-5% and 80+/-7%, respectively, while the QE of devices with NC layers thicker than about 150 nm falls, particularly in the blue, because of progressively greater light absorption in the field-free region of the films and enhanced recombination overall. Our results demonstrate that interference effects must be taken into account in order to calculate accurate optical generation profiles and IQE spectra for these thin film solar cells. The mixed modeling/experimental approach described here is a rigorous and powerful way to determine if multiple exciton generation (MEG) photocurrent is collected by devices with EQE<100%. On the basis of the magnitudes and shapes of the IQE spectra, we conclude that the 1,2-ethanedithiol treated NC devices studied here do not produce appreciable MEG photocurrent.Keywords
This publication has 18 references indexed in Scilit:
- Structural, Optical, and Electrical Properties of Self-Assembled Films of PbSe Nanocrystals Treated with 1,2-EthanedithiolACS Nano, 2008
- Adsorption Energy, Growth Mode, and Sticking Probability of Ca on Poly(methyl methacrylate) Surfaces with and without Electron DamageJournal of the American Chemical Society, 2007
- Enhanced optical field intensity distribution in organic photovoltaic devices using external coatingsApplied Physics Letters, 2006
- Modeling optical effects and thickness dependent current in polymer bulk-heterojunction solar cellsJournal of Applied Physics, 2006
- The effect of active layer thickness and composition on the performance of bulk-heterojunction solar cellsJournal of Applied Physics, 2006
- Optical optimization of polyfluorene-fullerene blend photodiodesJournal of Applied Physics, 2005
- Modeling of optical absorption in conjugated polymer/fullerene bulk-heterojunction plastic solar cellsThin Solid Films, 2004
- Small molecular weight organic thin-film photodetectors and solar cellsJournal of Applied Physics, 2003
- Quantum efficiency of exciton-to-charge generation in organic photovoltaic devicesJournal of Applied Physics, 2001
- Modeling photocurrent action spectra of photovoltaic devices based on organic thin filmsJournal of Applied Physics, 1999