Thermal Annealing on P3HT/PC70BM Solar Cells Incorporated with Au and CuO Nanoparticales

Volume: 5 Number: 4 December 1, 2015
  • Aruna P. Wanninayake
  • Shengyi Li
  • Benjamin C. Church
  • Nidal Abu-zahra
EN

Thermal Annealing on P3HT/PC70BM Solar Cells Incorporated with Au and CuO Nanoparticales

Abstract

In this work, thermal annealing is investigated to augment photovoltaic conversion efficiency (PCE) in bulk heterojunction polymer solar cells (BHJ-PSCs). Active layer (P3HT/PC70BM) and PEDOT: PSS film of these PSCs contain copper oxide nanoparticles (CuO-NPs) and gold nanoparticles (Au-NPs) respectively. Thermal annealing of P3HT/PC70BM thin films was performed at 150ºC for 30 minutes. X-ray diffraction (XRD) and differential scanning calorimetry (DSC) examination show an increased crystallinity of the heat-treated samples. Atomic force microscopic analysis (AFM) shows increased surface roughness after annealing, producing extra locations for crystallization of P3HT. Ultraviolet (UV)-visible as well as external quantum efficiency (EQE) spectra show enhanced self-organization, enhancing both crystallinity of P3HT and phase separation of the spin coated P3HT/PC70BM polymer films. However, ultraviolet-visible spectra do not show remarkable enhancement in light absorption with increasing gold concentration of PEDOT:PSS thin film owing to localised surface plasmonic resonance (LSPR) being distributed horizontally through the PEDOT:PSS film. PCE improved by 24% in the heat treated (Au/PEDOT: PSS)/(CuO/P3HT/PC70BM) solar cells.

Keywords

Details

Primary Language

English

Subjects

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Journal Section

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Authors

Aruna P. Wanninayake This is me

Shengyi Li This is me

Benjamin C. Church This is me

Nidal Abu-zahra This is me

Publication Date

December 1, 2015

Submission Date

February 3, 2016

Acceptance Date

-

Published in Issue

Year 2015 Volume: 5 Number: 4

APA
Wanninayake, A. P., Li, S., Church, B. C., & Abu-zahra, N. (2015). Thermal Annealing on P3HT/PC70BM Solar Cells Incorporated with Au and CuO Nanoparticales. International Journal Of Renewable Energy Research, 5(4), 1080-1091. https://izlik.org/JA27EK74WJ
AMA
1.Wanninayake AP, Li S, Church BC, Abu-zahra N. Thermal Annealing on P3HT/PC70BM Solar Cells Incorporated with Au and CuO Nanoparticales. International Journal Of Renewable Energy Research. 2015;5(4):1080-1091. https://izlik.org/JA27EK74WJ
Chicago
Wanninayake, Aruna P., Shengyi Li, Benjamin C. Church, and Nidal Abu-zahra. 2015. “Thermal Annealing on P3HT PC70BM Solar Cells Incorporated With Au and CuO Nanoparticales”. International Journal Of Renewable Energy Research 5 (4): 1080-91. https://izlik.org/JA27EK74WJ.
EndNote
Wanninayake AP, Li S, Church BC, Abu-zahra N (December 1, 2015) Thermal Annealing on P3HT/PC70BM Solar Cells Incorporated with Au and CuO Nanoparticales. International Journal Of Renewable Energy Research 5 4 1080–1091.
IEEE
[1]A. P. Wanninayake, S. Li, B. C. Church, and N. Abu-zahra, “Thermal Annealing on P3HT/PC70BM Solar Cells Incorporated with Au and CuO Nanoparticales”, International Journal Of Renewable Energy Research, vol. 5, no. 4, pp. 1080–1091, Dec. 2015, [Online]. Available: https://izlik.org/JA27EK74WJ
ISNAD
Wanninayake, Aruna P. - Li, Shengyi - Church, Benjamin C. - Abu-zahra, Nidal. “Thermal Annealing on P3HT PC70BM Solar Cells Incorporated With Au and CuO Nanoparticales”. International Journal Of Renewable Energy Research 5/4 (December 1, 2015): 1080-1091. https://izlik.org/JA27EK74WJ.
JAMA
1.Wanninayake AP, Li S, Church BC, Abu-zahra N. Thermal Annealing on P3HT/PC70BM Solar Cells Incorporated with Au and CuO Nanoparticales. International Journal Of Renewable Energy Research. 2015;5:1080–1091.
MLA
Wanninayake, Aruna P., et al. “Thermal Annealing on P3HT PC70BM Solar Cells Incorporated With Au and CuO Nanoparticales”. International Journal Of Renewable Energy Research, vol. 5, no. 4, Dec. 2015, pp. 1080-91, https://izlik.org/JA27EK74WJ.
Vancouver
1.Aruna P. Wanninayake, Shengyi Li, Benjamin C. Church, Nidal Abu-zahra. Thermal Annealing on P3HT/PC70BM Solar Cells Incorporated with Au and CuO Nanoparticales. International Journal Of Renewable Energy Research [Internet]. 2015 Dec. 1;5(4):1080-91. Available from: https://izlik.org/JA27EK74WJ