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首页> 外文期刊>Journal of Materials Science >Preparation of nanosized perovskite LaNiO3 powder via amorphous heteronuclear complex precursor
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Preparation of nanosized perovskite LaNiO3 powder via amorphous heteronuclear complex precursor

机译:非晶态异核配合物前驱体制备纳米钙钛矿LaNiO3粉末

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Nanosized lanthanum nickel oxide powder LaNiO3 with perovskite structure was successfully synthesized at a relatively low calcination temperature by using an amorphous heteronuclear complex LaNi(DTPA) . 6H(2)O as a precursor. The precursor decomposed completely into nickel oxide above 600degreesC based on the DTA and TGA results. XRD demonstrated that nanosized LaNiO3 crystalline powder with pure perovskite structure was obtained after the calcination temperature increased to 700degreesC. The effects of calcination time and temperature were also examined by XRD and TEM. The results indicated the grain size and the crystal size of LaNiO3 increased with the calcination temperature from 600degreesC to 900degreesC, and were less influenced by the heat-treatment time. The electrical resistivity of the powder decreased when the calcination temperature increased. It can be concluded that it is a useful way to synthesize nanosized perovskite oxides using an amorphous complex as a precursor, and this method can be easily quantitatively controlled. (C) 2003 Kluwer Academic Publishers. [References: 14]
机译:利用非晶态杂核配合物LaNi(DTPA),在较低的煅烧温度下成功合成了具有钙钛矿结构的纳米镧镍氧化物粉末LaNiO3。 6H(2)O作为前体。根据DTA和TGA结果,前体在600摄氏度以上完全分解成氧化镍。 XRD表明,将煅烧温度提高至700℃后,可获得具有纯钙钛矿结构的纳米LaNiO3晶体粉末。还通过XRD和TEM检查了煅烧时间和温度的影响。结果表明,LaNiO3的晶粒尺寸和晶体尺寸随煅烧温度从600℃增加到900℃而增加,而受热处理时间的影响较小。当煅烧温度升高时,粉末的电阻率降低。可以得出结论,这是使用非晶态络合物作为前体来合成纳米钙钛矿氧化物的有用方法,并且该方法可以轻松地进行定量控制。 (C)2003 Kluwer学术出版社。 [参考:14]

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