首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Electronic and steric effects of substituents on the conformational diversity and hydrogen bonding of N-(4-X-phenyl)-N′,N″- bis(piperidinyl) phosphoric triamides (X = F, Cl, Br, H, CH3): A combined experimental and DFT study
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Electronic and steric effects of substituents on the conformational diversity and hydrogen bonding of N-(4-X-phenyl)-N′,N″- bis(piperidinyl) phosphoric triamides (X = F, Cl, Br, H, CH3): A combined experimental and DFT study

机译:取代基对N-(4-X-苯基)-N',N''-双(哌啶基)磷酸三酰胺(X = F,Cl,Br,H,CH3)的构象多样性和氢键的电子和空间效应: DFT研究与实验相结合

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摘要

Phosphoric triamides of the general formula (4-X-C_6H _4NH)P(O)(NC_5H_(10))2, X = F (1), Cl (2), Br (3), H (4) and CH3 (5), have been synthesized and characterized. X-ray crystallography at 120 K reveals that the compounds 1, 3, 4·H2O and 5 are composed of one, four, two and four conformers, respectively. DFT calculations were performed to investigate the electronic structures of the compounds. The X-ray data and DFT calculations revealed that the conformational diversity in these compounds is mainly governed by the steric effects of the substituent X rather than by electronic effects. Although substituent X does not participate directly in hydrogen bonding, the crystal packing of the compounds is influenced by the size of X. Atoms in molecules (AIM) and natural bond orbital (NBO) analyses confirm that the para substituent X has no significant effect on the electronic features of the amidic proton and the phosphoryl oxygen atom (OP). Using X-ray crystallography, AIM and NBO analyses, the structural and electronic aspects of inter- and intramolecular hydrogen bonds of the compounds have been studied. The charge density (ρ) at the bond critical point (bcp) of the N-H bond decreases from the fully optimized monomers to their corresponding hydrogen bonded clusters. The N-H stretching frequency decreases from the calculated values to the experimental results.
机译:通式(4-X-C_6H _4NH)P(O)(NC_5H_(10))2的磷三酰胺,X = F(1),Cl(2),Br(3),H(4)和CH3( 5),已经合成并表征。在120 K的X射线晶体学分析表明,化合物1、3、4·H2O和5分别由一个,四个,两个和四个构象体组成。进行DFT计算以研究化合物的电子结构。 X射线数据和DFT计算表明,这些化合物的构象多样性主要由取代基X的空间效应而不是电子效应决定。尽管取代基X不直接参与氢键结合,但化合物的晶体堆积受到X大小的影响。分子中的原子(AIM)和天然键轨道(NBO)分析证实对位取代基X对氢原子无明显影响。酰胺质子和磷氧原子(OP)的电子特征使用X射线晶体学,AIM和NBO分析,已经研究了化合物分子间和分子内氢键的结构和电子方面。 N-H键的键临界点(bcp)处的电荷密度(ρ)从完全优化的单体向其相应的氢键簇降低。 N-H拉伸频率从计算值降低到实验结果。

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