ZnO nanowires, grown on transparent conducting oxide substrates from aqueous solutions of methenamine and Zn(NO3)(2), were integrated as the wide band gap semiconductor into dye-sensitized solar cells. ZnO nanowires and their growth mechanisms were studied using electron microscopy, x-ray diffraction and photoluminescence measurements. The solution growth method forms dense arrays of long nanowires oriented normal to the substrate surface because nanowires growing at off-normal angles are prevented from growing further when they run into neighbouring wires. Dye-sensitized solar cells with ZnO nanowires were assembled and characterized using optical and electrical measurements. Short circuit current densities of 1.3 mA cm(-2), and overall power conversion efficiencies of 0.3% were achieved with 8 mu m long nanowires. Photocurrent and efficiency increase with increasing nanowire length and improved light harvesting. Low surface area and a shunt that appears under light illumination limit the solar cell performance. Internal quantum efficiencies were similar for nanowires of all lengths, indicating that electron transport is not limited by the nanowire dimensions for aspect ratios less than 70.
机构:
Department of Chemistry, The Hong Kong University of Science and Technology
Wuhan National Laboratory for Optoelectronics, Huazhong University of Science andDepartment of Chemistry, The Hong Kong University of Science and Technology
Wei CHEN
Shihe YANG
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Department of Chemistry, The Hong Kong University of Science and TechnologyDepartment of Chemistry, The Hong Kong University of Science and Technology
机构:
Institute of Plasma Physics, Chinese Academy of Sciences, Hefei ,Institute of Plasma Physics, Chinese Academy of Sciences, Hefei , China Shanghai Institute of Space Power Sources, Shanghai , China
机构:
Univ Cadi Ayyad, Fac Sci Semlalia, Lab Mat Energy & Environm LaMEE, POB 2390, Marrakech 40000, MoroccoUniv Cadi Ayyad, Fac Sci Semlalia, Lab Mat Energy & Environm LaMEE, POB 2390, Marrakech 40000, Morocco
Nkhaili, L.
El Kissani, A.
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Univ Cadi Ayyad, Fac Sci Semlalia, Lab Mat Energy & Environm LaMEE, POB 2390, Marrakech 40000, MoroccoUniv Cadi Ayyad, Fac Sci Semlalia, Lab Mat Energy & Environm LaMEE, POB 2390, Marrakech 40000, Morocco
El Kissani, A.
Liang, C-T
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Natl Taiwan Univ, Dept Phys, Taipei 106, TaiwanUniv Cadi Ayyad, Fac Sci Semlalia, Lab Mat Energy & Environm LaMEE, POB 2390, Marrakech 40000, Morocco
Liang, C-T
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Abouloula, C. Naceur
Hnawi, S. K.
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机构:
Univ Cadi Ayyad, Fac Sci Semlalia, Lab Mat Energy & Environm LaMEE, POB 2390, Marrakech 40000, MoroccoUniv Cadi Ayyad, Fac Sci Semlalia, Lab Mat Energy & Environm LaMEE, POB 2390, Marrakech 40000, Morocco
Hnawi, S. K.
Ali, M. Ait
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Univ Cadi Ayyad, Fac Sci Semlalia, Lab Coordinat Chem & Catalysis, POB 2390, Marrakech 40000, MoroccoUniv Cadi Ayyad, Fac Sci Semlalia, Lab Mat Energy & Environm LaMEE, POB 2390, Marrakech 40000, Morocco
Ali, M. Ait
Narjis, A.
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Ibn Zohr Univ, Natl Sch Appl Sci, Ave Tamesoult, Agadir 80000, MoroccoUniv Cadi Ayyad, Fac Sci Semlalia, Lab Mat Energy & Environm LaMEE, POB 2390, Marrakech 40000, Morocco
Narjis, A.
Outzourhit, A.
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Univ Cadi Ayyad, Fac Sci Semlalia, Lab Mat Energy & Environm LaMEE, POB 2390, Marrakech 40000, MoroccoUniv Cadi Ayyad, Fac Sci Semlalia, Lab Mat Energy & Environm LaMEE, POB 2390, Marrakech 40000, Morocco
Outzourhit, A.
EUROPEAN PHYSICAL JOURNAL-APPLIED PHYSICS,
2022,
97