首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Performance of Range-Separated Hybrid Exchange-Correlation Functionals for the Calculation of Magnetic Exchange Coupling Constants of Organic Diradicals
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Performance of Range-Separated Hybrid Exchange-Correlation Functionals for the Calculation of Magnetic Exchange Coupling Constants of Organic Diradicals

机译:用于计算有机Diradicals磁交换耦合常数的范围分离的混合交换函数的性能

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摘要

The prediction of magnetic behavior is important for the design of new magnetic materials. Kohn-Sham density functional theory is popular for this purpose, although one should be careful about choosing the right exchange-correlation functional. Here, we perform a statistical analysis to test different range-separated hybrid density functionals for the calculation of magnetic exchange coupling constants J of fourteen organic diradicals. Our analysis suggests that in absolute terms the MN12SX functional performs best among the series of twelve functionals studied here (including the popular B3LYP), followed by N12SX functionals along with Scuseria's HSE series of functionals. LC-omega PBE was found to be the least accurate, which is in contrast with its good performance for calculating J for transition metal complexes. The HSE family of functionals and B3LYP are the only functionals to reproduce the qualitative trends of the coupling constants correctly for the ferro-magnetically coupled diradicals under study. (C) 2017 Wiley Periodicals, Inc.
机译:磁性行为的预测对于设计新磁性材料是重要的。 Kohn-Maf密度功能理论为此目的很受欢迎,尽管一个人应该小心选择正确的交换相关功能。这里,我们执行统计分析以测试用于计算十四有机Diradicals的磁交换耦合常数J的不同范围分离的混合密度函数。我们的分析表明,在绝对术语中,MN12SX功能在这里研究的十二个功能中最佳(包括流行的B3LYP),其次是N12SX功能以及Scuseria的HSE系列功能。 LC-Omega PBE被发现是最不准确的,这与其对转换金属配合物的良好性能相反。 HSE家族的功能和B3LYP是唯一能够为在研究中正确磁耦合的Diradicals再现耦合常数的定性趋势的唯一功能。 (c)2017 Wiley期刊,Inc。

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