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机构地区:[1]青岛大学物理科学学院,青岛266071 [2]山东大学晶体材料国家重点实验室,济南250100
出 处:《青岛大学学报(自然科学版)》2014年第1期30-34,共5页Journal of Qingdao University(Natural Science Edition)
摘 要:利用固相法制备了Nd1/2(Sr1-xCax)3/2MnO4(x=0.0,0.1,0.3,0.5,0.7,0.8,0.9)系列样品。通过中子衍射确定了系列样品的空间群为四方晶系I4/mmm。发现随着掺杂浓度的升高,电荷有序相变温度随之升高,MnO6八面体面内Mn-O间距与面间Mn-O间距比值减小。对样品Nd1/2(Sr0.3Ca0.7)3/2MnO4的电阻率和磁化率随温度变化关系分别进行了测量,确定其奈尔温度为和电荷有序温度分别为180K和258K。利用可变程跃迁模型,对样品在电荷有序温度之下的电输运特性进行了解释。Perovskite manganite Ndl/2 (Srl ~ Car ) 3/2 MnO4 (x = 0.0,0.1,0.3,0.5,0.7,0.8,0.9 ) were ob- tained by using solid-state reactions method. Neutron powder diffraction measurements indicate that thus obtained samples were single phase (I4/rnmm, Z:2). With the increase of x, Tco increases, but the ratio of the out-of-plane Mn-O length of MnO6 octahedra to the in-plane Mn-O length of MnO6 octahedra decrea- ses. In addition, the temperature variation of the susceptibility and the resistivity of Ndl/2 (Sr0.3 Ca0.7 )3/2 MnO4 were investigated. We have observed that TN ~ 180K and Tco: 258K in Ndl/2 (Sr0.3 Ca0.7 )3/2 MnO4 , respectively. We interpret the electrical transport properties of Nda/2 (Srl-~Cax)3/2MnO4 below TN in terms of variable range hopping model.
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