Mirzaei Mahmoud, Hadipour Nasser L
Department of Chemistry, Tarbiat Modares University, P.O. Box 14115-175, Tehran, Iran.
J Phys Chem A. 2006 Apr 13;110(14):4833-8. doi: 10.1021/jp0600920.
Hydrogen-bonding effects in the real crystalline structure of 9-methyladenine, 9-MA, were studied using calculated electric field gradient, EFG, and chemical shielding, CS, tensors for nitrogen and hydrogen nuclei via density functional theory. The calculations were carried out at the B3LYP and B3PW91 levels with the 6-311++G basis set via the Gaussian 98 package. Nuclear quadrupole coupling constants, C(Q), and asymmetry parameters, eta(Q), are reported for (14)N and (2)H. The chemical shielding anisotropy, Deltasigma, and chemical shielding isotropy, sigma(iso), are also reported for (15)N and (1)H. The difference between the calculated parameters of the monomer and heptameric layer-like cluster 9-MA shows how much H-bonding interactions affect the EFG and CS tensors of each nucleus. This result indicates that N(10) (imino nitrogen) has a major role in H-bonding interactions, whereas that of N(9) is negligible. There is good agreement between the present calculated parameters and reported experimental data. Although some discrepancies were observed, this could be attributed to the different conditions which were applied for calculation and the experiments.
利用密度泛函理论计算氮和氢原子核的电场梯度(EFG)及化学屏蔽(CS)张量,研究了9 - 甲基腺嘌呤(9 - MA)真实晶体结构中的氢键效应。计算通过高斯98程序包在B3LYP和B3PW91水平下采用6 - 311++G基组进行。报道了¹⁴N和²H的核四极耦合常数C(Q)及不对称参数η(Q)。还报道了¹⁵N和¹H的化学屏蔽各向异性Δσ及化学屏蔽各向同性σ(iso)。单体与七聚体层状簇9 - MA计算参数之间的差异表明氢键相互作用对每个原子核的EFG和CS张量影响程度。该结果表明N(10)(亚氨基氮)在氢键相互作用中起主要作用,而N(9)的作用可忽略不计。目前的计算参数与报道的实验数据吻合良好。尽管观察到一些差异,但这可能归因于计算和实验所采用的不同条件。