Institute of Physical and Theoretical Chemistry, University of Regensburg, Universitätsstraße 31, D-93040 Regensburg, Germany.
J Chem Phys. 2012 Aug 28;137(8):084107. doi: 10.1063/1.4744102.
An efficient method for the calculation of nuclear magnetic resonance (NMR) shielding tensors is presented, which treats electron correlation at the level of second-order Mo̸ller-Plesset perturbation theory. It uses spatially localized functions to span occupied and virtual molecular orbital spaces, respectively, which are expanded in a basis of gauge including atomic orbitals (GIAOs or London atomic orbitals). Doubly excited determinants are restricted to local subsets of the virtual space and pair energies with an interorbital distance beyond a certain threshold are omitted. Furthermore, density fitting is employed to factorize the electron repulsion integrals. Ordinary Gaussians are employed as fitting functions. It is shown that the errors in the resulting NMR shielding constant, introduced (i) by the local approximation and (ii) by density fitting, are very small or even negligible. The capabilities of the new program are demonstrated by calculations on some extended molecular systems, such as the cyclobutane pyrimidine dimer photolesion with adjacent nucleobases in the native intrahelical DNA double strand (ATTA sequence). Systems of that size were not accessible to correlated ab initio calculations of NMR spectra before. The presented method thus opens the door to new and interesting applications in this area.
本文提出了一种计算核磁共振(NMR)屏蔽张量的有效方法,该方法在二阶 Mo̸ller-Plesset 微扰理论水平上处理电子相关。它使用空间局域函数分别扩展占据和虚拟分子轨道空间,这些轨道空间分别扩展到包含原子轨道的规范基(GIAO 或伦敦原子轨道)中。双激发行列式被限制在虚拟空间的局部子集,并且将轨道间距离超过某个阈值的对能排除在外。此外,密度拟合用于将电子排斥积分因式分解。通常使用高斯函数作为拟合函数。结果表明,由局部近似(i)和密度拟合(ii)引入的 NMR 屏蔽常数中的误差非常小,甚至可以忽略不计。新程序的功能通过对一些扩展分子系统的计算得到了验证,例如天然螺旋 DNA 双链中相邻碱基的环丁烷嘧啶二聚体光损伤(ATTA 序列)。在此之前,对于此类大小的系统,相关从头算计算 NMR 谱是不可行的。因此,本文提出的方法为该领域的新的有趣应用开辟了道路。