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Hydrothermal-Electrochemical Synthesis of ZnO Nanorods
- Park, Seong Kyong;
- Park, Jae Hyoung;
- Ko, Ki Young;
- Yoon, Sungho;
- Chu, Kyo Seon;
- ... Kim, Woon;
- 외 1명
WEB OF SCIENCE
59SCOPUS
62초록
Vertically aligned ZnO nanorods having high optical quality were prepared by a hydrothermal-electrochemical method. The nanorods were synthesized in a Zn(NO3)(2) aqueous solution oil Si substrates which were coated with a platinum conducting layer and a ZnO seed layer. They possessed a single-crystal wurizite structure and grew along the c-axis, perpendicular to the substrates. The height and diameter of the ZnO nanorods were tip to similar to 4.3 mu m and 90-150 nm, respectively. The morphological, structural, and photoluminescence properties of the ZnO nanorods were examined with respect to the growth temperature (120-180 degrees C) and the presence of NaOH additive. The nanorods synthesized at high temperature (180 degrees C) exhibited a strong UV emission and a weak defect-related visible emission leading to a UV-visible ratio of similar to 230. This high optical quality was attributed to the increased growth rate of ZnO nanorods (similar to 4.3 mu m/h) which was caused by the high growth temperature (180 degrees C). This was based oil the fact that the ZnO phase is thermodynamically more favorable than the defect-related Zn(OH)(2) phase at higher temperature. Since the growth temperature was compatible with polymer materials, our sythetic method may provide a promising way for fabricating high performance optoelectronic devices oil flexible polymer substrates.
키워드
- 제목
- Hydrothermal-Electrochemical Synthesis of ZnO Nanorods
- 저자
- Park, Seong Kyong; Park, Jae Hyoung; Ko, Ki Young; Yoon, Sungho; Chu, Kyo Seon; Kim, Woon; Do, Young Rag
- 발행일
- 2009-08
- 유형
- Article
- 권
- 9
- 호
- 8
- 페이지
- 3615 ~ 3620