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초록
Cu2O is a good candidate material for use as a p-type absorber in solar cells. Here, uniform ZnO nanorod (NR)-Cu2O core-shell structures are fabricated and their diode performances are studied. ZnO NRs are grown on fluorine-doped tin oxide (FTO) glass using a hydrothermal method. Cu2O is then deposited on the ZnO NRs using bottom-up RF magnetron sputtering. The crystal structures of the deposited ZnO NRs and Cu2O are characterized using X-ray diffraction. From secondary electron microscopy analysis, the uniform core-shell structure and its size are identified. UV-vis spectroscopy measurements show that the optical bandgap of the Cu2O in this structure is 2.3 eV. The diode characteristics of the fabricated nanostructures depend on the thickness of Cu2O; 2.7 mu m-thick Cu2O on ZnO NRs shows diode properties. Lastly, we propose a band alignment model based on X-ray photoelectron spectroscopy analysis and demonstrate a possible approach for fabricating CuxO-ZnO nanohybrids for further improvements to device efficiency, highlighting a need for interfacial band offset medication for oxide heterojunction solar cells.
키워드
- 제목
- Uniform ZnO nanorod/Cu2O core-shell structured solar cells by bottom-up RF magnetron sputtering
- 저자
- Yoo, Il-Han; Kalanur, Shankara S.; Lee, Sang Yeon; Eom, Kiryung; Jeon, Hyeongtag; Seo, Hyungtak
- 발행일
- 2016-06
- 유형
- Article
- 저널명
- RSC Advances
- 권
- 6
- 호
- 86
- 페이지
- 82900 ~ 82906