DocumentCode
1437239
Title
Interdigitated Bulk Heterojunction Organic Photovoltaic Cells With Aligned Copper Phthalocyanine Nanorods
Author
Zheng, Ying ; Bekele, Robel ; Ouyang, Jiaomin ; Xue, Jiangeng
Author_Institution
Dept. of Mater. Sci. & Eng., Univ. of Florida, Gainesville, FL, USA
Volume
16
Issue
6
fYear
2010
Firstpage
1544
Lastpage
1551
Abstract
We show that vertically aligned nanorod arrays composed of copper phthalocyanine (CuPc) molecules can be grown on various substrates using the oblique angle deposition technique in high vacuum. High-density nanorod arrays with diameters of 20-70 nm and spacing of 10-100 nm have been achieved with either stationary or rotated substrates. Scanning electron and atomic force microscopies are combined to study the morphology of CuPc nanorods grown under different conditions. X-ray diffraction reveals that the crystallinity of the CuPc nanorods is similar to a flat CuPc film deposited under normal molecular incidence. Interdigitated bulk heterojunctions (BHJs) have been formed by successfully infiltrating [6,6]-phenyl-C61-butyric acid methyl ester (PCBM) to fill the spacing between the CuPc nanorods via spin coating. The resulted CuPc nanorod/PCBM photovoltaic cells possess a maximum power conversion efficiency approximately doubling that of bilayer CuPc/PCBM devices, demonstrating the effectiveness of the nanorod-based BHJ in enhancing both the donor-acceptor interfacial area and the exciton diffusion efficiency in the active layer.
Keywords
X-ray diffraction; atomic force microscopy; copper compounds; crystal structure; excitons; nanofabrication; nanorods; organometallic compounds; photovoltaic cells; scanning electron microscopy; spin coating; vacuum deposition; AFM; SEM; X-ray diffraction; XRD; [6,6]-phenyl-C61-butyric acid methyl ester; active layer; aligned copper phthalocyanine nanorods; atomic force microscopy; copper phthalocyanine molecules; copper phthalocyanine nanorod morphology; crystallinity; donor-acceptor interfacial area; exciton diffusion efficiency; high-density nanorod arrays; interdigitated bulk heterojunction organic photovoltaic cells; maximum power conversion efficiency; oblique angle deposition technique; rotated substrates; scanning electron microscopy; spin coating; stationary substrates; vertically aligned nanorod arrays; Atomic force microscopy; Atomic layer deposition; Copper; Heterojunctions; Morphology; Nanoscale devices; Photovoltaic cells; Scanning electron microscopy; Substrates; Vacuum technology; Interdigitated bulk heterojunction (BHJ); molecular nanorods; oblique angle deposition (OAD); organic photovoltaic cell;
fLanguage
English
Journal_Title
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
1077-260X
Type
jour
DOI
10.1109/JSTQE.2010.2041901
Filename
5428864
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