Autschbach Jochen, Patchkovskii Serguei, Pritchard Ben
Department of Chemistry, State University of New York at Buffalo , Buffalo, New York 14260-3000, United States.
National Research Council of Canada, 100 Sussex Drive Ottawa, Ontario K1A 0R6, Canada.
J Chem Theory Comput. 2011 Jul 12;7(7):2175-88. doi: 10.1021/ct200143w. Epub 2011 Jun 6.
Density functional theory (DFT) calculations of molecular hyperfine tensors were implemented as a second derivative property within the two-component relativistic zeroth-order regular approximation (ZORA). Hyperfine coupling constants were computed for systems ranging from light atomic radicals to molecules with heavy d and f block elements. For comparison, computations were also performed with a ZORA first-order derivative approach. In each set of computations, Slater-type basis sets have been used. The implementation allows for nonhybrid and hybrid DFT calculations and incorporates a Gaussian finite nucleus model. A comparison of results calculated with the PBE nonhybrid and the PBE0 hybrid functional is provided. Comparisons with differing basis sets and incorporation of finite-nucleus corrections are discussed. The second derivative method is applied to calculations of paramagnetic NMR ligand chemical shifts of three Ru(III) complexes. The results are consistent with those calculated using a first-order derivative method, and the results are consistent for different functionals used. A comparison of two different methods of calculating pseudo-contact shifts, one using the full hyperfine tensor and one assuming a point-charge paramagnetic center, is made for the Ru(III) complexes.
分子超精细张量的密度泛函理论(DFT)计算是在二分量相对论零阶正则近似(ZORA)中作为二阶导数性质实现的。计算了从轻原子自由基到含有重d和f族元素的分子等一系列体系的超精细耦合常数。为作比较,还采用ZORA一阶导数方法进行了计算。在每组计算中,都使用了斯莱特型基组。该实现允许进行非杂化和杂化DFT计算,并纳入了高斯有限核模型。给出了用PBE非杂化泛函和PBE0杂化泛函计算结果的比较。讨论了与不同基组的比较以及有限核校正的纳入情况。二阶导数方法应用于三种Ru(III)配合物的顺磁NMR配体化学位移计算。结果与用一阶导数方法计算的结果一致,并且对于所使用的不同泛函结果也一致。对Ru(III)配合物比较了两种计算赝接触位移的不同方法,一种使用完整的超精细张量,另一种假设为点电荷顺磁中心。