Department of Chemistry, Warsaw University of Life Sciences (SGGW), 02-776 Warsaw, Poland.
Institut de Chimie de Nice, Université Côte d'Azur, Parc Valrose, 06108 Nice, France.
Molecules. 2022 Jul 7;27(14):4370. doi: 10.3390/molecules27144370.
This work extends our earlier quantum chemical studies on the gas-phase basicity of very strong N-bases to two series of nitriles containing the methylenecyclopropene and cyclopropenimine scaffolds with dissymmetrical substitution by one or two electron-donating substituents such as Me, NR, N=C (NR), and N=P (NR), the last three being strong donors. For a proper prediction of their gas-phase base properties, all potential isomeric phenomena and reasonable potential protonation sites are considered to avoid possible inconsistencies when evaluating the energetic parameters and associated protonation or deprotonation equilibria B + H = BH. More than 250 new isomeric structures for neutral and protonated forms are analyzed. The stable structures are selected and the favored ones identified. The microscopic (kinetic) gas-phase basicity parameters (PA and GB) corresponding to N sites (cyano and imino in the cyclopropenimine or in the substituents) in each isomer are calculated. The macroscopic (thermodynamic) PAs and GBs, referring to the isomeric mixtures of favored isomers, are also estimated. The total (pushing) substituent effects are analyzed for monosubstituted and disubstituted derivatives containing two identical or two different substituents. Electron delocalization is examined in the two π-π conjugated transmitters, the methylenecyclopropene and cyclopropenimine scaffolds. The aromatic character of the three-membered ring is also discussed.
这项工作扩展了我们早期关于气相强碱的量子化学研究,研究对象是含有亚甲基环丙烯和环丙烯亚胺骨架的两个系列腈,这些腈通过一个或两个供电子取代基(如 Me、NR、N=C(NR)和 N=P(NR))进行不对称取代,后三个取代基是强供电子体。为了正确预测它们的气相碱性,考虑了所有可能的异构现象和合理的潜在质子化位置,以避免在评估能量参数和相关质子化或去质子化平衡 B + H = BH 时出现不一致。对中性和质子化形式的超过 250 种新的异构体结构进行了分析。选择稳定的结构并确定有利的结构。计算了每个异构体中 N 位(环丙烯亚胺中的氰基和亚氨基或取代基中的)对应的微观(动力学)气相碱性参数(PA 和 GB)。还估算了涉及有利异构体混合物的宏观(热力学)PA 和 GB。对于含有两个相同或两个不同取代基的单取代和二取代衍生物,分析了总(推)取代基效应。在两个π-π共轭传输器(亚甲基环丙烯和环丙烯亚胺骨架)中检查了电子离域。还讨论了三元环的芳香性。