Solution processable organic/inorganic hybrid ultraviolet photovoltaic detector
Ultraviolet (UV) photodetector is a kind of important optoelectronic device which can be widely used in scientific and engineering fields including astronomical research, environmental monitoring, forest-fire prevention, medical analysis, and missile approach warning etc. The development of UV detec...
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Published in | AIP advances Vol. 6; no. 5; pp. 055318 - 055318-7 |
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Main Authors | , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Melville
American Institute of Physics
01.05.2016
AIP Publishing LLC |
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Abstract | Ultraviolet (UV) photodetector is a kind of important optoelectronic device which can be widely used in scientific and engineering fields including astronomical research, environmental monitoring, forest-fire prevention, medical analysis, and missile approach warning etc. The development of UV detector is hindered by the acquirement of stable p-type materials, which makes it difficult to realize large array, low-power consumption UV focal plane array (FPA) detector. Here, we provide a novel structure (Al/Poly(9,9-di-n-octylfuorenyl-2,7-diyl)(PFO)/ZnO/ITO) to demonstrate the UV photovoltaic (PV) response. A rather smooth surface (RMS roughness: 0.28 nm) may be reached by solution process, which sheds light on the development of large-array, light-weight and low-cost UV FPA detectors. |
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AbstractList | Ultraviolet (UV) photodetector is a kind of important optoelectronic device which can be widely used in scientific and engineering fields including astronomical research, environmental monitoring, forest-fire prevention, medical analysis, and missile approach warning etc. The development of UV detector is hindered by the acquirement of stable p-type materials, which makes it difficult to realize large array, low-power consumption UV focal plane array (FPA) detector. Here, we provide a novel structure (Al/Poly(9,9-di-n-octylfuorenyl-2,7-diyl)(PFO)/ZnO/ITO) to demonstrate the UV photovoltaic (PV) response. A rather smooth surface (RMS roughness: 0.28 nm) may be reached by solution process, which sheds light on the development of large-array, light-weight and low-cost UV FPA detectors. |
Author | Lau, Shu Ping Ji, Rongbin Kong, Jincheng Guo, Xiaopeng Zhao, Jun Xiang, Jinzhong Tang, Libin Zhang, Kai Lai, Sin Ki |
Author_xml | – sequence: 1 givenname: Xiaopeng surname: Guo fullname: Guo, Xiaopeng organization: Yunnan University – sequence: 2 givenname: Libin surname: Tang fullname: Tang, Libin email: scitang@163.com organization: Kunming Institute of Physics – sequence: 3 givenname: Jinzhong surname: Xiang fullname: Xiang, Jinzhong email: jzhxiang@ynu.edu.cn organization: Yunnan University – sequence: 4 givenname: Rongbin surname: Ji fullname: Ji, Rongbin email: jirongbin@gmail.com organization: Kunming Institute of Physics – sequence: 5 givenname: Kai surname: Zhang fullname: Zhang, Kai organization: Chinese Academy of Sciences – sequence: 6 givenname: Sin Ki surname: Lai fullname: Lai, Sin Ki organization: The Hong Kong Polytechnic University – sequence: 7 givenname: Jun surname: Zhao fullname: Zhao, Jun organization: Kunming Institute of Physics – sequence: 8 givenname: Jincheng surname: Kong fullname: Kong, Jincheng organization: Kunming Institute of Physics – sequence: 9 givenname: Shu Ping surname: Lau fullname: Lau, Shu Ping organization: The Hong Kong Polytechnic University |
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SubjectTerms | Environmental monitoring Fire prevention Focal plane devices Medical research Optoelectronic devices Photovoltaic cells Power consumption Sensors Solar cells Ultraviolet detectors Weight reduction Zinc oxide |
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Title | Solution processable organic/inorganic hybrid ultraviolet photovoltaic detector |
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