Rusakov Yuriy Yu, Rusakova Irina L
A. E. Favorsky Irkutsk Institute of Chemistry, Siberian Branch of the Russian Academy of Sciences, Favorsky St. 1, 664033 Irkutsk, Russian Federation.
J Chem Phys. 2022 Jun 28;156(24):244112. doi: 10.1063/5.0096907.
This paper demonstrates the performance of our previously suggested property-energy consistent method on the example of the generation of effective basis sets, pecS-1 and pecS-2, suited for the calculation of hydrogen, carbon, nitrogen, and oxygen chemical shifts. The new basis sets were successfully approbated in the GIAO-DFT calculations of the chemical shifts of 35 molecules using six different functionals. The pecS-1 basis set demonstrated very good accuracy, which makes this small basis set an effective means for the large-scale computations. At the same time, the pecS-2 basis set also gave very accurate results, thus putting it on a par with the other commensurate basis sets suited for the chemical shifts calculations.
本文以生成适用于计算氢、碳、氮和氧化学位移的有效基组pecS-1和pecS-2为例,展示了我们之前提出的性质-能量一致方法的性能。在使用六种不同泛函对35个分子的化学位移进行GIAO-DFT计算中,新的基组成功得到验证。pecS-1基组表现出非常好的准确性,这使得这个小基组成为大规模计算的有效手段。同时,pecS-2基组也给出了非常准确的结果,从而使其与其他适用于化学位移计算的相应基组处于同一水平。