首页> 外文期刊>International Journal of Quantum Chemistry >Layered mixed-metal phenylphosphonates, MnxCo1-x(O3PC6H5)center dot H2O: Structure and magnetic properties
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Layered mixed-metal phenylphosphonates, MnxCo1-x(O3PC6H5)center dot H2O: Structure and magnetic properties

机译:层状混合金属苯基膦酸盐,MnxCo1-x(O3PC6H5)中心点H2O:结构和磁性

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Mixed metal phenylphosphonates of composition MnxCo1-x(O3PC6H5).H2O were prepared with 0 less than or equal to x less than or equal to 1. Atomic absorption, X-ray powder diffraction, and electron paramagnetic resonance measurements indicate that the mixed-metal solid solutions are homogeneous and isostructural with the single-metal-parent compounds over the entire concentration range, with a small, systematic evolution of the a and c in-plane unit cell parameters, The temperature dependence of the magnetic data for the pure Mn2+ (x = 1) and pure Co2+ (x = 0) samples was fitted by standard 2D Heisenberg and 2D Ising models, respectively, yielding nearest-neighbor exchange interaction energies of J = -2.27 +/- 0.02 K for Mn(O3PC6H5).H2O and J = -2.43 +/- 0.05 K for Co(O3PC6H5).H2O. The magnetic phase diagram, down to 2 K, was constructed over the entire composition range. Both de and ac magnetic susceptibilities were used to identify the transitions to low temperature, long-range-ordered antiferromagnetic states, In the Mn2+- and Co2+-rich regions, the ordering temperature, T-N, decreases relative to the pure materials, as expected for magnetic ion impurity doping. For intermediate values of x, Mn2+-Mn2+ interactions dominate, resulting in a minimum in T-N near x = 0.25, A weak negative magnetization was observed for x < 0.25, No evidence of spin glass behavior was observed for any concentration at any temperature. (C) 2001 Academic Press. [References: 57]
机译:制备组成为MnxCo1-x(O3PC6H5).H2O的混合金属苯基膦酸盐,其0小于或等于x小于或等于1。原子吸收,X射线粉末衍射和电子顺磁共振测量表明,该混合金属固溶体在整个浓度范围内均是同质且同质的,具有单金属母体化合物,且a和c面内晶胞参数有小而系统的演变,纯Mn2 +( x = 1)和纯Co2 +(x = 0)样品分别通过标准2D Heisenberg模型和2D Ising模型拟合,得出Mn(O3PC6H5)的最近邻交换相互作用能为J = -2.27 +/- 0.02 K.对于Co(O3PC6H5).H2O,J = -2.43 +/- 0.05K。在整个成分范围内构造了低至2 K的磁相图。磁化率和交流磁化率均用于确定向低温,长距离有序反铁磁态的跃迁。在富Mn2 +和Co2 +的区域中,有序温度TN相对于纯净材料降低,如预期的那样。磁离子杂质掺杂。对于x的中间值,Mn2 + -Mn2 +相互作用占主导地位,导致T-N在x = 0.25附近最小。对于x <0.25,观察到弱的负磁化强度,在任何温度下任何浓度下均未观察到自旋玻璃行为的证据。 (C)2001学术出版社。 [参考:57]

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