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采用固相反应法制备La5/8(PrxCa1-x)3/8MnO3(x=0.25,0.5,0.75)多晶样品,研究其磁性质和电磁输运特性.X射线衍射表明,La5/8(PrxCa1-x)3/8MnO3(x=0.25,0.5,0.75)多晶样品室温的晶体结构呈Pnma空间群的正交结构.磁化强度-电阻(M~T)关系显示,La5/8(PrxCa1-x)3/8MnO3(x=0.25,0.5,0.75)的居里温度TC随Pr掺杂量增加而逐渐降低,三种样品分别为160K、150K、100K.此外,随着Pr3+掺杂量增加,样品晶格畸变程度增大,铁磁相互作用减弱,并且三种成分均形成自旋玻璃态,其自旋冻结温度分别为150K、75K、70K.电阻-温度(ρ~T)关系表明,样品在x=0.25时出现电阻的双峰现象,这是由于样品中铁磁相与反铁磁相相互竞争造成的.结果表明,通过对钙钛矿锰氧化物的A位稀土掺杂,可对其CMR效应进行有效调控.  相似文献   
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采用常规陶瓷制备工艺制备了xLaySr(1-y)MnO3+(1-x) [0.2PbZn0.5Yb0.5O3-0.8Pb0.33Zr0.67TiO3](x=0.025、0.05、0.075、0.1、0.15、0.2,y=0.7、0.9)三元体系陶瓷,系统研究了不同成分LSMO掺杂对FZN-PZT磁学及电学性能影响.结果表明,掺入不同比例的LSMO均溶解入PZN-FZT晶格,导致PZN-PZT峰位偏移;随着LSMO掺杂量的提高,陶瓷的矫顽场E及剩余极化强度Pr降低;原本分别呈现铁磁性和反铁磁性的LyS(1-y) MO3(y=0.7、0.9)磁性消失;随着LMSO掺杂量的提高,晶粒尺寸变大.  相似文献   
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葛道晗  胡州  张立强  祝世宁 《中国物理 B》2022,31(1):10701-010701
A new design of staggered array semi-packed micro gas chromatographic column was presented based on the micro electromechanical system(MEMS)technology.It was a sensor for gas sample analysis.The internal velocity fields of ten types of semi-packed micro gas chromatographic column were studied.The effects of array spacing and dislocation spacing on the flow field distribution were investigated.The results show that on the basis of ensuring the formation of virtual wall,with the increase of array spacing,the maximum velocity difference between the flow channels in the vertical direction decreases gradually,but the velocity difference in the flow channels a and b increases.When the inlet velocity was set to be 0.18 m/s,the maximum velocity difference in the channel of the staggered semi-packed micro gas chromatography column 3(CSAC3)was 0.05610 m/s.The maximum velocity difference in the channel a was 0.09160 m/s.The maximum velocity difference in the channel b was 0.02401 m/s.CSAC3 had a more uniform velocity field distribution,which can effectively suppress the laminar flow effect during chromatographic separation,and had a smaller pressure distribution,which puts forward lower requirements for carrier gas system.The staggered array semi-packed micro gas chromatography column proposed in this paper can effectively improve the velocity field distribution and pressure distribution in the channel,and provide a theoretical basis for the design of the new micro gas chromatography column structure.  相似文献   
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