Lübben Jens, Wandtke Claudia M, Hübschle Christian B, Ruf Michael, Sheldrick George M, Dittrich Birger
Institut für Anorganische Chemie der Universität Göttingen, Tammannstrasse 4, Göttingen, D-37077, Germany.
Laboratory of Crystallography, University of Bayreuth, D-95440 Bayreuth, Germany.
Acta Crystallogr A Found Adv. 2019 Jan 1;75(Pt 1):50-62. doi: 10.1107/S2053273318013840.
A new aspherical scattering factor formalism has been implemented in the crystallographic least-squares refinement program SHELXL. The formalism relies on Gaussian functions and can optionally complement the independent atom model to take into account the deformation of electron-density distribution due to chemical bonding and lone pairs. Asphericity contributions were derived from the electron density obtained from quantum-chemical density functional theory computations of suitable model compounds that contain particular chemical environments, as defined by the invariom formalism. Thanks to a new algorithm, invariom assignment for refinement in SHELXL is automated. A suitable parameterization for each chemical environment within the new model was achieved by metaheuristics. Figures of merit, precision and accuracy of crystallographic least-squares refinements improve significantly upon using the new model.
一种新的非球形散射因子形式体系已在晶体学最小二乘精修程序SHELXL中实现。该形式体系依赖于高斯函数,并且可以选择补充独立原子模型,以考虑由于化学键和孤对电子导致的电子密度分布变形。非球形贡献源自通过不变量形式体系定义的、包含特定化学环境的合适模型化合物的量子化学密度泛函理论计算所获得的电子密度。得益于一种新算法,SHELXL精修中的不变量分配实现了自动化。通过元启发式算法实现了新模型中每个化学环境的合适参数化。使用新模型后,晶体学最小二乘精修的品质因数、精度和准确性显著提高。