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块状铁磁体对-(甲硫基)苯基硝酰基氮氧化物(YUJNEW)中磁相互作用的机制:第一性原理、自下而上的理论研究。

The mechanism of magnetic interactions in the bulk ferromagnet para-(methylthio)phenyl nitronyl nitroxide (YUJNEW): a first principles, bottom-up, theoretical study.

作者信息

Deumal Mercè, Bearpark Michael J, Robb Michael A, Pontillon Yves, Novoa Juan J

机构信息

Departament de Química Física, Universitat de Barcelona, Centre de Recerca en Química Teòrica (CeRQT), Parc Científic de Barcelona, Av. Diagonal 647, 08028 Barcelona, Spain.

出版信息

Chemistry. 2004 Dec 3;10(24):6422-32. doi: 10.1002/chem.200400493.

Abstract

The mechanism of magnetic interactions in the bulk ferromagnet para-(methylthio)phenyl nitronyl nitroxide crystal (YUJNEW) has been theoretically reinvestigated, using only data from ab initio calculations and avoiding any a priori assumptions. We first calculate the microscopic magnetic interactions (JAB exchange couplings) between all unique radical pairs in the crystal, and then generate the macroscopic magnetic properties from the energy levels of the corresponding Heisenberg Hamiltonian. We thus propose a first principles, bottom-up (i.e. micro-to-macro) approach that brings theory and experiment together. We have applied this strategy to study the magnetism of YUJNEW using data from the previously reported 298 and 114 K crystal structures, and also data from a 10 K neutron diffraction structure fully reported in this work. The magnetic topology at 298 K is two-dimensional: noninteracting planes, with three different in-plane JAB pair interactions (+0.24, +0.09, and -0.11 cm(-1)) and one numerically negligible (+0.02 cm(-1)) inter-plane JAB interaction. In contrast, the magnetic topology at 114 and 10 K is three-dimensional, with two non-negligible in-plane JAB constants (+0.11 and +0.07 cm(-1) at 114 K; +0.22 and +0.07 cm(-1) at 10 K) and one inter-plane pair interaction (+0.07 cm(-1) at 114 K; +0.08 cm(-1) at 10 K). Although this three-dimensional magnetic topology is consistent with YUJNEW being a bulk ferromagnet, there is only a qualitative agreement between computed and experimental magnetic susceptibility chiT(T) data at 114 K. However, the experimental chiT(T) curve is quantitatively reproduced at 10 K. The heat capacity curve presents a peak at around 0.12 K, close to the estimated experimental peak (0.20 K).

摘要

仅使用从头算计算数据且避免任何先验假设,对块状铁磁体对-(甲硫基)苯基硝酰基氮氧化物晶体(YUJNEW)中的磁相互作用机制进行了理论再研究。我们首先计算晶体中所有独特自由基对之间的微观磁相互作用(JAB交换耦合),然后从相应海森堡哈密顿量的能级生成宏观磁性质。因此,我们提出了一种将理论与实验结合起来的第一性原理、自下而上(即微观到宏观)的方法。我们已应用此策略,利用先前报道的298K和114K晶体结构数据以及本工作中完整报道的10K中子衍射结构数据来研究YUJNEW的磁性。298K时的磁拓扑是二维的:非相互作用平面,具有三种不同的面内JAB对相互作用(+0.24、+0.09和 -0.11cm⁻¹)以及一种数值上可忽略的(+0.02cm⁻¹)面间JAB相互作用。相比之下,114K和10K时的磁拓扑是三维的,具有两个不可忽略的面内JAB常数(114K时为+0.11和+0.07cm⁻¹;10K时为+0.22和+0.07cm⁻¹)以及一个面间对相互作用(114K时为+0.07cm⁻¹;10K时为+0.08cm⁻¹)。尽管这种三维磁拓扑与YUJNEW是块状铁磁体一致,但在114K时计算的和实验的磁化率χT(T)数据之间仅存在定性一致。然而,在10K时实验的χT(T)曲线得到了定量再现。热容曲线在约0.12K处出现一个峰值,接近估计的实验峰值(0.20K)。

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