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The Effects of Split Valence Basis Sets on Muon Hyperfine Interaction in Guanine Nucleobase and Nucleotide Structures

机译:分裂价基集对鸟嘌呤核碱基和核苷酸结构中的μm杂种相互作用的影响

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The DFT cluster method was employed to investigate the electronic structures and muonium hyperfine interactions in guanine nucleobase and nucleotide using three different basis sets. The total energy and Fermi contact values were calculated for muon trapped at carbon '8'. The three basis sets, 6-31G, 6-311G and 6-311G(d,p), were used in tandem with the B3LYP functional. There are significant quantitative differences in the calculated total energy. 6-311G(d,p) produced the lowest total energy as compared to the other basis sets. The lowering of the total energy is due to the increase in the number of basis functions to describe the atomic orbitals, which is consistent with the postulate on basis set completeness. The 6-31G basis set produced the muon Fermi contact value that is the closest to the experimental value. The calculated Fermi contact values for the nucleobase and nucleotide are significantly lowered in going from the double-zeta to the triple-zeta basis set by 5% and 4% respectively. The lowering of the Fermi contact value can be attributed to the extension of the triple-zeta basis set in describing the valence atomic orbitals. The presence of the sugar phosphate group in the nucleotide instead of the methyl group tends to lower the Fermi contact value. Thus, the sugar phosphate group should be taken into consideration when designing a calculation model.
机译:使用DFT聚类方法来研究三种不同基集的鸟嘌呤核碱基和核苷酸中的电子结构和高血清相互作用。对于碳'8'捕获的μ子计算总能量和费米接触值。三个基础组,6-31g,6-311g和6-311g(d,p)与B3lyp功能一起使用。计算出的总能量存在显着的定量差异。与其他基础集相比,6-311G(D,P)产生最低总能量。总能量的降低是由于描述原子轨道的基本函数的数量增加,这与基础组完整性的假设一致。 6-31G基础集生产了μ杯FERMI接触值,即最接近实验值。计算出的核碱基和核苷酸的FERMI接触值显着降低,从双ζ到三左氧化物的基础分别为5%和4%。 FERMI接触值的降低可归因于在描述价原子轨道的三替达基础集中的扩展。核苷酸中的糖磷酸酯基团的存在往往会降低Fermi接触值。因此,在设计计算模型时,应考虑糖磷酸盐组。

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