第一个基于C(O)NHP(O)的磷酸三酰胺结构与N-H···π氢键:结合x射线晶体学和理论研究来评价氢键的强度

M. Taherzadeh, M. Pourayoubi, R. Afzali, M. Nečas
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引用次数: 3

摘要

摘要研究了N-(4-甲氧基苯甲酰)-N′,N″-双(4-甲基苄基)-磷酸三酰胺C24H28N3O3P (I)的氢键模式。在晶体结构中,分子通过NCP - h··O = P和NP - h··O = C氢键以平行于C轴的一维排列方式聚集(NCP是C(O)NHP(O)段中的氮原子,NP是与P原子成键的另外两个氮原子)。晶体中还存在一种新颖的NP-H···π氢键,将分子的聚集扩展到平行于bc平面的二维阵列。剑桥结构数据库(CSD, version 5.37, 2016年2月)分析表明,在迄今报道的156个[RC(O)NH]P(O)[NR1R2]2 (R1≠H, R2 = H或≠H)磷酸三酰胺结构中均未观察到N-H···π氢键。在B3LYP/6-311G**理论水平(DFT、AIM和NBO)上进行理论计算,评估NCP-H··O = P、NP-H··O = C和NP-H··π氢键的强度,考虑含有这些氢键的双聚集体分子组合。对标题化合物的计算表明,分子间的NCP-H··O = P氢键比NP-H··O = C和NP-H··π的相互作用更强。通过NBO、拓扑分析、几何计算、Hirshfeld表面分析和实验光谱学分析对其氢键强度进行了研究,结果吻合较好。
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The first C(O)NHP(O)-based phosphoric triamide structure with an N‒H···π hydrogen bonding: A combination of X-ray crystallography and theoretical study to evaluate the strength of hydrogen bonds
GRAPHICAL ABSTRACT ABSTRACT The hydrogen bond pattern of N-(4-methoxybenzoyl)-N′,N″-bis(4-methylbenzyl)-phosphoric triamide, C24H28N3O3P, (I), was investigated. In the crystal structure, the molecules are aggregated through NCP―H···O═P and NP―H···O═C hydrogen bonds in a one-dimensional arrangement parallel to the c axis (NCP is the nitrogen atom in the C(O)NHP(O) segment and NP stands for the two other nitrogen atoms bonded to the P atom). There is also a novel NP‒H···π hydrogen bond in the crystal which extends the aggregation of the molecules to a two-dimensional array parallel to the bc plane. A Cambridge Structural Database (CSD, version 5.37, Feb 2016) analysis shows that the N―H···π hydrogen bond was not observed in any of 156 [RC(O)NH]P(O)[NR1R2]2 (R1 ≠ H, R2 = H or ≠ H) phosphoric triamide structures reported so far. The theoretical calculations at the B3LYP/6-311G** level of theory (DFT, AIM, and NBO) were performed to evaluate the strengths of NCP―H···O═P, NP―H···O═C and NP―H···π hydrogen bonds, considering two-aggregate molecular assemblies containing these hydrogen bonds. The calculations on the title compound suggest that the intermolecular NCP―H···O═P hydrogen bond is stronger than NP―H···O═C and NP―H···π interactions. The hydrogen bond strength was investigated by NBO, topological analysis, geometry calculation, Hirshfeld surface analysis and experimental spectroscopic results, which are in agreement with each other.
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