Department of Chemistry, University of Lucknow, Lucknow 226 007, UP, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2013 Sep;113:378-85. doi: 10.1016/j.saa.2013.04.121. Epub 2013 May 15.
The spectroscopic analysis of a newly synthesized 1,9-bis(2-cyano-2-ethoxycarbonylvinyl)-5-(4-hydroxyphenyl)-dipyrromethane (3) has been carried out using (1)H NMR, UV-Visible, FT-IR and Mass spectroscopic techniques. All the quantum chemical calculations have been carried out using DFT level of theory, B3LYP functional and 6-31G(d,p) as basis set. Thermodynamic parameters (H, G, S) of all the reactants and products have been used to determine the nature of the chemical reaction. The chemical shift of pyrrolic NH in (1)H NMR spectrum appears at 9.4 ppm due to intramolecular hydrogen bonding. TD-DFT calculation shows the nature of electronic transitions as π→π(*) within the molecule. A combined experimental and theoretical vibrational analysis designates the existence of H-bonding between pyrrole N-H as proton donor and nitrogen of cyanide as proton acceptor, therefore, lowering in stretching vibration of NH and CN. To investigate the strength and nature of H-bonding, topological parameters at bond critical points (BCPs) are analyzed by 'Quantum theory of Atoms in molecules' (QTAIMs). Natural bond orbitals (NBOs) analysis has been carried out to investigate the intramolecular conjugative and hyperconjugative interactions within molecule and their second order stabilization energy (E((2))). Global electrophilicity index (ω=4.528 eV) shows that title molecule (3) is a strong electrophile. The maximum values of local electrophilic reactivity descriptors (fk(+),sk(+),ωk(+)) at vinyl carbon (C6/C22) of (3) indicate that these sites are more prone to nucleophilic attacks.
采用(1)H NMR、UV-Visible、FT-IR 和质谱技术对新合成的 1,9-双(2-氰基-2-乙氧羰基乙烯基)-5-(4-羟基苯基)二吡咯甲烷(3)进行了光谱分析。所有量子化学计算均采用 DFT 理论、B3LYP 函数和 6-31G(d,p)基组进行。使用所有反应物和产物的热力学参数(H、G、S)来确定化学反应的性质。(1)H NMR 谱中吡咯 NH 的化学位移由于分子内氢键出现在 9.4 ppm 处。TD-DFT 计算表明电子跃迁的性质为分子内的π→π*。实验与理论相结合的振动分析表明,吡咯 N-H 作为质子供体与氰基氮之间存在氢键,因此,NH 和 CN 的伸缩振动降低。为了研究氢键的强度和性质,通过“分子中的原子量子理论”(QTAIMs)分析键临界点(BCPs)处的拓扑参数。进行自然键轨道(NBOs)分析以研究分子内的共轭和超共轭相互作用及其二阶稳定化能(E((2)))。全局电负性指数(ω=4.528 eV)表明标题分子(3)是一种强亲电试剂。(3)中乙烯基碳(C6/C22)处局部亲电反应性描述符(fk(+)、sk(+)、ωk(+))的最大值表明这些位点更容易受到亲核攻击。