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Development of Molybdenum Trioxide (MoO3) by Spin Coating Method for Photovoltaic Application
作者姓名:Loundja Chibane  Mohamed Said Belkaid  Marcel Pasquinelli  Hassina Derbal-Habak  Jean-Jacque Simon  Dallila Hocine
作者单位:[1]Laboratory of Advanced Technologies of Genie Electrics (LATAGE), Faculty of Electrical and Computer Engineering MouloudMammeri University (UMMTO), Tizi-Ouzou BP 17 RP 15000, Algeria [2]Institute for Microelectronics Materials Nanosciences of Provence (1M2NP) Aix-Marseille University, Marseille Cedex 20F-13397, France
摘    要:Molybdenum trioxide (MOO3), thin films have been deposited on glass substrates by spin-coating method using ammonium heptamolybdate tetrahydrate ((NH4)6Mo7O24·4H2O) as a single source precursor of Mo and O. They were subjected to atmospheric heat treatment at different temperatures (200, 400 and 500 ℃). MoQ thin films obtained were characterized using X-ray diffraction techniques (XRD), scanning electron microscopy (SEM), energy dispersed spectroscopy (EDS) and integrating sphere. The XRD patterns of annealed films show the formation of MoO3 in a polycrystalline phase, formation of MoO3 was also confirmed by EDS. The SEM photographs show that the thin films obtained are in layer-type structure and their grains size increases with increasing of annealing temperatures. The measurement results of integrating sphere show that the MoO3 thin film prepared at 500 ~C transmit about 72% and reflect about 12% of the visible spectrum.

关 键 词:三氧化钼薄膜  旋转涂布法  X射线衍射技术  扫描电子显微镜  应用  光伏  退火温度  七钼酸铵

Development of Molybdenum Trioxide (MoO3) by Spin Coating Method for Photovoltaic Application
Loundja Chibane,Mohamed Said Belkaid,Marcel Pasquinelli,Hassina Derbal-Habak,Jean-Jacque Simon,Dallila Hocine.Development of Molybdenum Trioxide (MoO3) by Spin Coating Method for Photovoltaic Application[J].Journal of Materials Science and Engineering B,2013(7):418-422.
Affiliation:Loundja Chibane, Mohamed Said Belkaid, Marcel Pasquinelli, Hassina Derbal-Habak, Jean-Jacque Simon and Dallila Hocine 1. Laboratory of Advanced Technologies of Genie Electrics (LATAGE), Faculty of Electrical and Computer Engineering Mouloud Mammeri University (UMMTO), Tizi-Ouzou BP 17 RP 15000, Algeria 2. Institute for Microelectronics Materials Nanosciences of Provence (IM2NP) Aix-Marseille University, Marseille Cedex 20 F-13397. France
Abstract:Material, MOO3, oxide, lamellar, photovoltaic.
Keywords:Material  MOO3  oxide  lamellar  photovoltaic  
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