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Effects of the doping ZnO on the property of magnetic solid acid SO 4 2-/ZrO2-Fe3O4
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نویسنده
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fan m. ,ren b. ,wang j. ,jing x.
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منبع
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journal of the chemical society of pakistan - 2013 - دوره : 35 - شماره : 2 - صفحه:267 -271
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چکیده
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Two kinds of magnetic solid acid catalysts are prepared via a simple chemical coprecipitation approach. the obtained materials are characterized by x-ray diffraction,ft-ir spectrometer,different scanning calorimetry,vibrating sample magnetometer,transmission electron microscopy,high-resolution transmission electron microscopy and hammett indicator. the results indicate that the doping of zno restrains the phase transformation from tetragonal zirconia to monoclinic zirconia. furthermore,the samples show a magnetic behavior. saturation magnetization of the sample so4 2-/zro2-fe3o4 is smaller than so4 2-/zro2-fe3o4-zno; transmission electron microscopy results indicate that the increasing zno makes the grains size considerably smaller,and the high-resolution transmission electron microscopy shows that the doping of zno maintains the desired tetragonal zirconia phase,and the interplanar spacing is d(101)=0.29 nm. hammett indicator results show that the acid strength becomes stronger because of the doping of zno. the synthesis of methyl laurate as the probe reactions of magnetic solid acids is studied,and the result indicates that the doping of zno delays the deactivation rate of catalysts.
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کلیدواژه
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Chemical co-precipitation; Magnetic solid acid; Nanocomposite; ZnO
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آدرس
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college of material science and chemical engineering,harbin engineering university,harbin 150001,china,department of applied chemistry engineering,jilin vocational college of industry and technology,jilin, China, college of material science and chemical engineering,harbin engineering university,harbin 150001,china,department of applied chemistry engineering,jilin vocational college of industry and technology,jilin, China, college of material science and chemical engineering,harbin engineering university, China, college of material science and chemical engineering,harbin engineering university,harbin 150001,china,key laboratory of superlight materials and surface technology,ministry of education, China
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Authors
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