首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Phase stability, crystal structure and magnetism in (U$_{mathrm{1-x}}$Nb$_{mathrm{x}})_{mathrm{2}}$Ni$_{mathrm{21}}$B$_{mathrm{6}}$ and (U$_{mathrm{y}}$Nb$_{mathrm{1-y}})_{mathrm{3}}$Ni$_{mathrm{20}}$B$_{mathrm{6}}$.
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APS -APS March Meeting 2017 - Event - Phase stability, crystal structure and magnetism in (U$_{mathrm{1-x}}$Nb$_{mathrm{x}})_{mathrm{2}}$Ni$_{mathrm{21}}$B$_{mathrm{6}}$ and (U$_{mathrm{y}}$Nb$_{mathrm{1-y}})_{mathrm{3}}$Ni$_{mathrm{20}}$B$_{mathrm{6}}$.

机译:APS -APS 2017年3月会议-事件-(U $ _ {mathrm {1-x}} $ Nb $ _ {mathrm {x}})_ {mathrm {2}} $ Ni $中的相稳定性,晶体结构和磁性_ {mathrm {21}} $ B $ _ {mathrm {6}} $和(U $ _ {mathrm {y}} $ Nb $ _ {mathrm {1-y}})_ {mathrm {3}} $ Ni $ _ {mathrm {20}} $ B $ _ {mathrm {6}} $。

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Ternary phases with composition T$_{mathrm{2}}$M$_{mathrm{21}}$X$_{mathrm{6}}$ and T$_{mathrm{3}}$M$_{mathrm{20}}$X$_{mathrm{6}}$ (T $=$ transition metal; M $=$ 3$d$ metal; X $=$ B, C, P) are reported to crystallize with the W$_{mathrm{2}}$Cr$_{mathrm{21}}$C$_{mathrm{6}}$-type and Mg$_{mathrm{3}}$Ni$_{mathrm{20}}$B$_{mathrm{6}}$-type, respectively (ternary ordered derivatives of the cubic Cr$_{mathrm{23}}$C$_{mathrm{6}}$-type, extit{cF}116). They attract interest due to their refractory, mechanical, and peculiar magnetic properties. Literature data on these compounds only concern apparently stoichiometric 2:21:6 and 3:20:6 phases. Often only nominal composition has been reported, with few structural refinements and no measurements of physical properties. Lack of detailed stoichiometry and crystallographic data does not allow sufficient understanding of the crystal chemistry and properties of these compounds.We studied stability, crystal structure and magnetism of (U$_{mathrm{1-x}}$Nb$_{mathrm{x}})_{mathrm{2}}$Ni$_{mathrm{21}}$B$_{mathrm{6}}$ and (U$_{mathrm{y}}$Nb$_{mathrm{1-y}})_{mathrm{3}}$Ni$_{mathrm{20}}$B$_{mathrm{6}}$; stable phases are U$_{mathrm{2}}$Ni$_{mathrm{21}}$B$_{mathrm{6}}$ and Nb$_{mathrm{3}}$Ni$_{mathrm{20}}$B$_{mathrm{6}}$, as also confirmed by theoretical calculations. The two pristine compounds solubilize Nb and U, respectively, up to a given extent. The substitution of U by Nb leads to a structural change from the W$_{mathrm{2}}$Cr$_{mathrm{21}}$C$_{mathrm{6}}$- to the Mg$_{mathrm{3}}$Ni$_{mathrm{20}}$B$_{mathrm{6}}$-type. While U$_{mathrm{2}}$Ni$_{mathrm{21}}$B$_{mathrm{6}}$ is a Pauli paramagnet (itinerant non-magnetic state of U-5$f$ electrons), in agreement with literature, magnetization data for (U$_{mathrm{y}}$Nb$_{mathrm{1-y}})_{mathrm{3}}$Ni$_{mathrm{20}}$B$_{mathrm{6}}$ show itinerant ferromagnetism with T$_{mathrm{C}}$ extgreater 300 K.
机译:由T $ _ {mathrm {2}} $ M $ _ {mathrm {21}} $ X $ _ {mathrm {6}} $和T $ _ {mathrm {3}} $ M $ _ {mathrm组成的三元相据报道{20}} $ X $ _ {mathrm {6}} $(T $ = $过渡金属; M $ = $ 3 $ d $金属; X $ = $ B,C,P)随W结晶。 $ _ {mathrm {2}} $ Cr $ _ {mathrm {21}} $ C $ _ {mathrm {6}} $-type和Mg $ _ {mathrm {3}} $ Ni $ _ {mathrm {20} } $ B $ _ {mathrm {6}} $型(三次Cr $ _ {mathrm {23}} $ C $ _ {mathrm {6}} $型三元有序衍生,现存{cF} 116)。由于它们的耐火,机械和特殊的磁性,它们引起了人们的兴趣。这些化合物的文献数据仅涉及表观化学计量的2:21:6和3:20:6相。通常只报告名义组成,很少有结构改进,也没有物理性能的测量。缺乏详细的化学计量和晶体学数据无法充分理解这些化合物的晶体化学和性质。我们研究了(U $ _ {mathrm {1-x}} $ Nb $ _ {mathrm { x}})_ {mathrm {2}} $ Ni $ __ {mathrm {21}} $ B $ _ {mathrm {6}} $和(U $ _ {mathrm {y}} $ Nb $ _ {mathrm { 1-y}})_ {mathrm {3}} $ Ni $ _ {mathrm {20}} $ B $ _ {mathrm {6}} $;稳定阶段为U $ _ {mathrm {2}} $ Ni $ _ {mathrm {21}} $ B $ _ {mathrm {6}} $和Nb $ _ {mathrm {3}} $ Ni $ _ {mathrm { 20}} $ B $ _ {mathrm {6}} $,这也得到了理论计算的证实。两种原始化合物分别溶解Nb和U,直至达到给定程度。用Nb代替U导致结构上的变化从W $ _ {mathrm {2}} $ Cr $ _ {mathrm {21}} $ C $ _ {mathrm {6}} $-变为Mg $ _ { mathrm {3}} $ Ni $ _ {mathrm {20}} $ B $ _ {mathrm {6}} $类型。 U $ _ {mathrm {2}} $ Ni $ _ {mathrm {21}} $ B $ _ {mathrm {6}} $是Pauli顺磁体(U-5 $ f $电子的流动非磁性态) ,与文献一致,磁化数据为(U $ _ {mathrm {y}} $ Nb $ _ {mathrm {1-y}})_ {mathrm {3}} $ Ni $ _ {mathrm {20}} $ B $ _ {mathrm {6}} $显示了巡回铁磁性,T $ _ {mathrm {C}} $$扩展了30万。

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