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首页> 外文期刊>Journal of Molecular Structure >Synthesis, molecular structure, multiple interactions and chemical reactivity analysis of a novel ethyl 2-cyano-3-[5-(hydrazinooxalyl- hydrazonomethyl)-1H-pyrrol-2-yl]-acrylate and its dimer: A combined experimental and theoretical (DFT and QTAIM) approach
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Synthesis, molecular structure, multiple interactions and chemical reactivity analysis of a novel ethyl 2-cyano-3-[5-(hydrazinooxalyl- hydrazonomethyl)-1H-pyrrol-2-yl]-acrylate and its dimer: A combined experimental and theoretical (DFT and QTAIM) approach

机译:新型乙基2-氰基-3- [5-(肼基草酰-肼基甲基)-1H-吡咯-2-基]丙烯酸酯及其二聚体的合成,分子结构,多重相互作用和化学反应性分析:实验和理论相结合( DFT和QTAIM)方法

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A detailed spectroscopic analyses of a newly synthesized ethyl 2-cyano-3-[5-(hydrazinooxalyl-hydrazonomethyl)-1H-pyrrol-2-yl]-acrylate (3) have been carried out using 1H and 13C 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. The ~1H and ~(13)C NMR chemical shifts are calculated using gauge including atomic orbitals (GIAOs) approach in DMSO-d_6. TD-DFT is used to calculate the energy (E), oscillatory strength (f) and wavelength absorption maxima (λ_(max)) of various electronic transitions and their nature within molecule. Natural bond orbital (NBO) analysis is carried out to investigate the various intra and intermolecular interactions in dimer and their corresponding second order stabilization energy (E~((2))). A combined theoretical and experimental vibrational analysis confirms the existence of dimer and the binding energy of dimer is calculated as 9.21 kcal/mol using DFT calculations. To determine the energy and nature of different interactions topological parameters at bond critical points (BCPs) have been analyzed by Bader's 'atoms in molecules' (AIMs) theory in detail. Electrophilic charge transfer (ECT) is calculated to investigate the relative electrophilic or nucleophilic behavior of reactant molecules involved in chemical reaction. Global electrophilicity index (ω = 5.5836 eV) shows that title molecule (3) is a strong electrophile. The local reactivity descriptors such as Fukui functions (fk+,fk-), local softness (sk+,sk-) and electrophilicity indices (ωk+,ωk-) analyses are performed to determine the reactive sites within molecule.
机译:使用1H和13C NMR在UV-Visible下对新合成的乙基2-氰基-3- [5-(肼基草酰-肼基甲基)-1H-吡咯-2-基]丙烯酸酯(3)进行了详细的光谱分析,FT-IR和质谱技术。所有的量子化学计算都是使用DFT理论水平,B3LYP功能和6-31G(d,p)作为基础进行的。使用DMSO-d_6中的包括原子轨道(GIAOs)的量规来计算〜1H和〜(13)C NMR化学位移。 TD-DFT用于计算各种电子跃迁的能量(E),振荡强度(f)和波长吸收最大值(λ_(max))及其分子内的性质。进行自然键轨道(NBO)分析以研究二聚体中的各种分子内和分子间相互作用及其相应的二阶稳定能(E〜((2)))。结合理论和实验振动分析证实了二聚体的存在,并使用DFT计算得出二聚体的结合能为9.21 kcal / mol。为了确定不同相互作用的能量和性质,已经通过Bader的“分子中的原子”(AIM)理论对键临界点(BCP)的拓扑参数进行了详细分析。计算亲电电荷转移(ECT)以研究参与化学反应的反应物分子的相对亲电或亲核行为。全球亲电指数(ω= 5.5836 eV)表明标题分子(3)是强亲电体。执行诸如Fukui函数(fk +,fk-),局部柔软度(sk +,sk-)和亲电性指数(ωk+,ωk-)分析之类的局部反应性描述符,以确定分子内的反应位点。

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