Centre of New Technologies, University of Warsaw, 02-097 Warsaw, Poland.
Faculty of Chemistry, University of Wroclaw, 50-383 Wroclaw, Poland.
Molecules. 2023 Mar 3;28(5):2360. doi: 10.3390/molecules28052360.
The electronic structure and reactivity of 22 isorhodanine (IsRd) derivatives in the Diels-Alder reaction with dimethyl maleate (DMm) were investigated under two different environments (gas phase and continuous solvent CH3COOH), using free Gibbs activation energy, free Gibbs reaction energy, and frontier molecular orbitals to analyze their reactivity. The results revealed both inverse electronic demand (IED) and normal electronic demand (NED) characteristics in the Diels-Alder reaction and also provided insights into the aromaticity of the IsRd ring by employing HOMA values. Additionally, the electronic structure of the IsRd core was analyzed through topological examination of the electron density and electron localization function (ELF). Specifically, the study demonstrated that ELF was able to successfully capture chemical reactivity, highlighting the potential of this method to provide valuable insights into the electronic structure and reactivity of molecules.
研究了 22 种异羟肟酸(IsRd)衍生物在与马来酸二甲酯(DMm)的 Diels-Alder 反应中的电子结构和反应性,分别在气相和连续溶剂 CH3COOH 两种不同环境下进行,通过自由 Gibbs 活化能、自由 Gibbs 反应能和前沿分子轨道来分析它们的反应性。结果表明,Diels-Alder 反应中既有逆电子需求(IED)又有正常电子需求(NED)的特征,并通过 HOMA 值提供了对 IsRd 环芳香性的见解。此外,通过电子密度和电子定域函数(ELF)的拓扑检验分析了 IsRd 核的电子结构。具体来说,该研究表明,ELF 能够成功捕捉化学反应性,突出了该方法在提供分子电子结构和反应性方面的潜力。