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首页> 外文期刊>Chemical Physics Letters >Study of hydrogen bonds in 1-methyluracil by DFT calculations of oxygen, nitrogen, and hydrogen quadrupole coupling constants and isotropic chemical shifts
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Study of hydrogen bonds in 1-methyluracil by DFT calculations of oxygen, nitrogen, and hydrogen quadrupole coupling constants and isotropic chemical shifts

机译:通过DFT计算氧,氮和氢四极偶合常数和各向同性化学位移研究1-甲基尿嘧啶中的氢键

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摘要

Hydrogen bonds (HB) properties were studied in 1-methyluracil (1MU) by DFT calculations of solid-state NMR parameters including quadrupole coupling constants and isotropic chemical shifts at oxygen, nitrogen, and hydrogen nuclei. To perform the calculations, the neutron diffraction crystalline structures of 1MU at 15 and 123 K were obtained from literature and heptameric clusters including the most HB interacting molecules with the target one were created and considered. The calculated results reveal different contributions of various nuclei to HB in the cluster where O4 and N3 have the major contributions.
机译:通过DFT计算固态NMR参数(包括四极偶合常数以及在氧,氮和氢原子核上的各向同性化学位移),对1-甲基尿嘧啶(1MU)中的氢键(HB)性质进行了研究。为了进行计算,从文献中获得了15MU和123K下1MU的中子衍射晶体结构,并创建并考虑了包含与目标HB相互作用最多的分子的七聚体簇。计算结果表明,在O4和N3起主要作用的星团中,各个核对HB的贡献不同。

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