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二元掺杂镧锰氧化物La-Ca-Ba-Mn-O的庞磁电阻特性

祝向荣 沈鸿烈 沈勤我 李 铁 邹世昌 Koichi Tsukamoto Mamoru Okutomi Takeshi Yanagisawa Noboru Higuchi

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二元掺杂镧锰氧化物La-Ca-Ba-Mn-O的庞磁电阻特性

祝向荣, 沈鸿烈, 沈勤我, 李 铁, 邹世昌, Koichi Tsukamoto, Mamoru Okutomi, Takeshi Yanagisawa, Noboru Higuchi

Colossal Magnetoresistance in Two-Element-Doped La-Ca-Ba-Mn-O

Zhu Xiang-Rong, Shen Hong-Lie, Shen Qin-Wo, Li Tie, Zou Shi-Chang, Koichi Tsukamoto, Mamoru Okutomi, Takeshi Yanagisawa, Noboru Higuchi
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  • 用固相反应法制备了二元掺杂的镧锰氧化物La0.67(Ca0.6Ba0.4)0.33MnOz(LCBMO)立方多晶体材料,研究了其磁特性和庞磁电阻特性,并与用类似方法制备的一元掺杂的La0.67Ca0.33MnOz(LCMO)及La0.67Ba0.33MnOz(LBMO)的庞磁电阻特性进行了比较.研究表明,LCBMO的居里温度TC为312K,介于LCMO和LBMO的TC(分别为280,362K)之间,其金属-半导体转变温度Tp和μ0H=0.6T下的磁电阻(MR)峰值温度Tm分别为306,298K,接近于其TC,也介于LCMO和LBMO的Tp和Tm之间.μ0H=0.6T下,在各自的Tm处,LCMO,LCBMO和LBMO的庞磁电阻值分别达到41%,24.7%和8%,但在室温(300K)处,LCBMO的MR值仍达到20%,远大于LCMO和LBMO的值(分别为2.0%和2.4%).研究还发现,在温度远低于Tm时,LCMO仍保持一定的磁电阻效应,而LCBMO和LBMO的磁电阻温度降低而增加,这些低温磁电阻特性与材料的结构特征(如晶界和致密度)有关.
    Bullk materials of two-element-doped manganite La0.67(Ca0.6Ba0.4)0.33MnOz (LCBMO) which were prepared by solid state reaction method, where shown to have cubic polycrystalline structure. The magnetic and colossal magnetoresistive properties of LCBMO were investigated and were compared with those of one-element-doped La0.67Ca0.33MnOz (LCMO) and La0.67Ba0.33MnOz (LBMO)prepared by the similar technique. The results showed that the Curie temperature (TC) of LCBMO was 312K, which was between those of LCMO and LBMO, and that the metal-semiconductor transition temperature (Tp) and magnetoresistance (MR) peak temperature (Tm) of LCBMO under μ0H=0.6T field were 306 and 298K respectively, both of which were close to its TC and were also between the Tp and Tm of LCMO and LBMO. Under μ0H=0.6T applied field, the colossal magnetoresistance value at corresponding Tm was 41% for LCMO, 24.7% for LCBMO, 8% for LBMO, but at room temperature (300K) the MR value of LCBMO still reached 20%, which was greatly larger than those of LCMO and LBMO, i.e.2.0% and 2.4%, respectively. It was observed that at low temperatures far below Tm there still existed magnetoresistance effect in LCMO, and the MR value of LCBMO and LBMO increased with decreasing temperature. These magnetoresistance properties at low temperatures could be ascribed to the intrinsic structural characterstics such as grain boundaries and density.
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出版历程
  • 收稿日期:  1999-06-10
  • 刊出日期:  2006-09-06

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