Enhanced diode characteristics of organic solar cells using titanium suboxide electron transport layer
- 19 April 2010
- journal article
- research article
- Published by AIP Publishing in Applied Physics Letters
- Vol. 96 (16), 163303
- https://doi.org/10.1063/1.3409116
Abstract
The (dark) diode characteristics of the organic bulk heterojunction solar cell based on the phase separated blend of poly[N-9″-heptadecanyl-2,7-carbazole-alt-5,5-(4′,7′-di-2-thenyl-2′,1′,3′-benzothiadiazole)] with [6,6]-phenyl C70-butyric acid methyl ester have been analyzed with a focus on the effect of the titanium suboxide (TiOx) electron transport layer. The addition of the TiOx layer into the device structure causes the saturation current density to decrease by a factor of 26 and the shunt resistance to increase by a factor of 12. The diode ideality factor and series resistance are, respectively, almost the same for diodes made with and without the TiOx layer. The results indicate that the TiOx layer increases the energy barrier for hole transport and reduces the minority carrier density.Keywords
This publication has 13 references indexed in Scilit:
- Highly Efficient Tandem Polymer Photovoltaic CellsAdvanced Materials, 2010
- Polymer solar cells with enhanced open-circuit voltage and efficiencyNature Photonics, 2009
- Titanium suboxide as an optical spacer in polymer solar cellsApplied Physics Letters, 2009
- A model for the J-V characteristics of P3HT:PCBM solar cellsJournal of Applied Physics, 2009
- Bulk heterojunction solar cells with internal quantum efficiency approaching 100%Nature Photonics, 2009
- An equivalent circuit approach to organic solar cell modellingMicroelectronics Journal, 2008
- An extensively valid and stable method for derivation of all parameters of a solar cell from a single current-voltage characteristicJournal of Applied Physics, 2008
- Performance Analysis of Printed Bulk Heterojunction Solar CellsAdvanced Functional Materials, 2006
- New Architecture for High‐Efficiency Polymer Photovoltaic Cells Using Solution‐Based Titanium Oxide as an Optical SpacerAdvanced Materials, 2006
- Polymer Photovoltaic Cells: Enhanced Efficiencies via a Network of Internal Donor-Acceptor HeterojunctionsScience, 1995