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Toward fast and accurate ab initio calculation of magnetic exchange in polynuclear lanthanide complexes

机译:朝向多核镧系元络合物中磁交换的快速准确的AB初始计算

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Ab initio calculations of the magnetic exchange in polynuclear lanthanide complexes are very challenging and often not feasible, due to large active spaces, the large number of required states or the necessity to include dynamical correlation into the calculations. We present an approach which allows for the computationally efficient calculation of exchange splittings in polynuclear lanthanide complexes including dynamical correlation. This is achieved by extending the local-density-fitted configuration-averaged Hartree-Fock (LDF-CAHF) method to systems with more than one group of open-shell orbitals (e.g. at different metal atoms) and combining it with linear-scaling many-state pair-natural-orbital complete active space perturbation theory of second order (PNO-CASPT2). In order to assess the performance of the method, we apply it to the asymmetric dinuclear complex [hqH(2)][Yb-2(hq)(4)(NO3)(3)]center dot MeOH (hqH = 8-hydroxyquinoline).
机译:由于大的有源空间,由于大的有源空间,所需状态的大量或必要性地包括将动态相关性的磁性交换中的磁交换中的磁交换的计算非常具有挑战性并且通常是不可行的。 我们提出一种方法,其允许在多核镧系元件中的交换分裂计算的计算上有效地计算,包括动力相关性。 这是通过将局部密度拟合的配置平均的Hartree-Fock(LDF-CAHF)方法扩展到具有多于一组开壳轨道(例如在不同金属原子)的系统中来实现的,并将其与线性缩放相结合 - 第二阶(PNO-CASPT2)的营销配对 - 自然轨道完全有源空间扰动理论。 为了评估该方法的性能,我们将其应用于不对称的二核络合物[HQH(2)] [YB-2(HQ)(4)(NO 3)(3)]中心点MeOH(HQH = 8-羟基喹啉 )。

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