Synthesis of a perovskite LaNiO3 nanocatalyst at a low temperature using single reverse microemulsion
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作者:
Aman, D.
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Egyptian Petr Res Inst, Refining Div, Catalysis Dept, Nasr City, Cairo, EgyptEgyptian Petr Res Inst, Refining Div, Catalysis Dept, Nasr City, Cairo, Egypt
Aman, D.
[1
]
Zaki, T.
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Egyptian Petr Res Inst, Refining Div, Catalysis Dept, Nasr City, Cairo, EgyptEgyptian Petr Res Inst, Refining Div, Catalysis Dept, Nasr City, Cairo, Egypt
Zaki, T.
[1
]
Mikhail, S.
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Egyptian Petr Res Inst, Refining Div, Catalysis Dept, Nasr City, Cairo, EgyptEgyptian Petr Res Inst, Refining Div, Catalysis Dept, Nasr City, Cairo, Egypt
Mikhail, S.
[1
]
Selim, S. A.
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Ain Shams Univ, Fac Sci, Dept Chem, Cairo, EgyptEgyptian Petr Res Inst, Refining Div, Catalysis Dept, Nasr City, Cairo, Egypt
Selim, S. A.
[2
]
机构:
[1] Egyptian Petr Res Inst, Refining Div, Catalysis Dept, Nasr City, Cairo, Egypt
[2] Ain Shams Univ, Fac Sci, Dept Chem, Cairo, Egypt
Perovskite LaNiO3 nanoparticles were prepared by a reverse (water/oil) microemulsion method. The microemulsion system consisted of cetyltrimethylammonium bromide, 1-butanol, cyclohexane, and the metal salt solution. The procedure was carried out using aqueous ammonia as the co-precipitating agent. Reverse microemulsions were characterized by measuring the conductivity of the solutions. The dried precipitate was transformed to a perovskite by calcination at 750 degrees C. Nanosized particles were characterized by thermal analysis, X-ray diffraction, UV-diffuse reflectance spectroscopy, and transmission electron microscopy. The LaNiO3 samples have narrow band gaps and consequently achieved visible-light-induced photocatalytic activity towards the degradation of naphthalene species. The solar photocatalytic activity was found to be influenced by the nanoparticle size. (C) 2010 Elsevier B.V. All rights reserved.
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Korea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South KoreaKorea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South Korea
Choi, Jong-Jin
Ryu, Jungho
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Korea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South KoreaKorea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South Korea
Ryu, Jungho
Hahn, Byung-Dong
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Korea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South KoreaKorea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South Korea
Hahn, Byung-Dong
Yoon, Woon-Ha
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Korea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South KoreaKorea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South Korea
Yoon, Woon-Ha
Park, Dong-Soo
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Korea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South KoreaKorea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South Korea
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Korea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South KoreaKorea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South Korea
Choi, Jong-Jin
Ryu, Jungho
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h-index: 0
机构:
Korea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South KoreaKorea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South Korea
Ryu, Jungho
Hahn, Byung-Dong
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Korea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South KoreaKorea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South Korea
Hahn, Byung-Dong
Yoon, Woon-Ha
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Korea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South KoreaKorea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South Korea
Yoon, Woon-Ha
Park, Dong-Soo
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机构:
Korea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South KoreaKorea Inst Mat Sci, Funct Ceram Res Grp, Dept Powder Mat, Chang Won 641831, Gyeongnam, South Korea