Design and fabrication of polythiophene-based organic photovoltaic devices on glass and plastic substrate

This thesis reports our various experimental and theoretical work on design and fabrication of organic bulk hetero junction photovoltaic devices based on P3HT:PCBM blends, fabricated on glass and plastic. This work compares several measured characteristics of these devices so as to bring insight on...

Full description

Bibliographic Details
Main Author: Ebadian, Soheil
Format: Others
Language:English
Published: University of British Columbia 2009
Online Access:http://hdl.handle.net/2429/12120
id ndltd-UBC-oai-circle.library.ubc.ca-2429-12120
record_format oai_dc
spelling ndltd-UBC-oai-circle.library.ubc.ca-2429-121202018-01-05T17:23:41Z Design and fabrication of polythiophene-based organic photovoltaic devices on glass and plastic substrate Ebadian, Soheil This thesis reports our various experimental and theoretical work on design and fabrication of organic bulk hetero junction photovoltaic devices based on P3HT:PCBM blends, fabricated on glass and plastic. This work compares several measured characteristics of these devices so as to bring insight on the effect of annealing and regioregularity of the polymer on the photovoltaic characteristic of the devices. More specifically, we present the fabrication method of P3HT:PCBM organic photovoltaic devices on glass and plastic. By comparing the low and high regioregular (RR) P3HT samples used for fabrication of solar cells, we conclude that devices based on higher RR P3HT are more prone to degradation. The low RR device, on the other hand, demonstrates an increase in the hole mobility in post-annealed conditions as thermal annealing causes a more effective π - π stacking. This leads to unchanged or even higher power conversion efficiency (PCE) of the devices with lower regioregularity after thermal annealing. For the same reason, the low RR devices are found to be more stable during a four month degradation analysis while the efficiency of high RR device decreases drastically in the same period of time. We also present a method for reducing the roughness of polyethylene terephthalate (PET) substrates for fabrication of organic photovoltaics. Using PEDOT:PSS we have been able to reduce the roughness drastically and have increased the yield by decreasing the possibility of top-bottom electrode short circuit. In this method the PEDOT:PSS is deposited on the substrate in a 2-step method that makes the substrate smoother and more uniform before P3HT:PCBM deposition. Applied Science, Faculty of Electrical and Computer Engineering, Department of Graduate 2009-08-13T13:30:44Z 2009-08-13T13:30:44Z 2009 2009-11 Text Thesis/Dissertation http://hdl.handle.net/2429/12120 eng Attribution-NonCommercial-NoDerivatives 4.0 International http://creativecommons.org/licenses/by-nc-nd/4.0/ 6426128 bytes application/pdf University of British Columbia
collection NDLTD
language English
format Others
sources NDLTD
description This thesis reports our various experimental and theoretical work on design and fabrication of organic bulk hetero junction photovoltaic devices based on P3HT:PCBM blends, fabricated on glass and plastic. This work compares several measured characteristics of these devices so as to bring insight on the effect of annealing and regioregularity of the polymer on the photovoltaic characteristic of the devices. More specifically, we present the fabrication method of P3HT:PCBM organic photovoltaic devices on glass and plastic. By comparing the low and high regioregular (RR) P3HT samples used for fabrication of solar cells, we conclude that devices based on higher RR P3HT are more prone to degradation. The low RR device, on the other hand, demonstrates an increase in the hole mobility in post-annealed conditions as thermal annealing causes a more effective π - π stacking. This leads to unchanged or even higher power conversion efficiency (PCE) of the devices with lower regioregularity after thermal annealing. For the same reason, the low RR devices are found to be more stable during a four month degradation analysis while the efficiency of high RR device decreases drastically in the same period of time. We also present a method for reducing the roughness of polyethylene terephthalate (PET) substrates for fabrication of organic photovoltaics. Using PEDOT:PSS we have been able to reduce the roughness drastically and have increased the yield by decreasing the possibility of top-bottom electrode short circuit. In this method the PEDOT:PSS is deposited on the substrate in a 2-step method that makes the substrate smoother and more uniform before P3HT:PCBM deposition. === Applied Science, Faculty of === Electrical and Computer Engineering, Department of === Graduate
author Ebadian, Soheil
spellingShingle Ebadian, Soheil
Design and fabrication of polythiophene-based organic photovoltaic devices on glass and plastic substrate
author_facet Ebadian, Soheil
author_sort Ebadian, Soheil
title Design and fabrication of polythiophene-based organic photovoltaic devices on glass and plastic substrate
title_short Design and fabrication of polythiophene-based organic photovoltaic devices on glass and plastic substrate
title_full Design and fabrication of polythiophene-based organic photovoltaic devices on glass and plastic substrate
title_fullStr Design and fabrication of polythiophene-based organic photovoltaic devices on glass and plastic substrate
title_full_unstemmed Design and fabrication of polythiophene-based organic photovoltaic devices on glass and plastic substrate
title_sort design and fabrication of polythiophene-based organic photovoltaic devices on glass and plastic substrate
publisher University of British Columbia
publishDate 2009
url http://hdl.handle.net/2429/12120
work_keys_str_mv AT ebadiansoheil designandfabricationofpolythiophenebasedorganicphotovoltaicdevicesonglassandplasticsubstrate
_version_ 1718582122211442688