Kącka-Zych Agnieszka, Jasiński Radomir
Faculty of Chemical Engineering and Technology, Cracow University of Technology, Cracow, Poland.
J Comput Chem. 2022 Jul 5;43(18):1221-1228. doi: 10.1002/jcc.26885. Epub 2022 May 10.
The density functional theory computational study indicates the possibility of the synthesis of seven-membered internal nitronates via cycloaddition reactions involving Z-C-aryl-N-methylnitrones and E-2-aryl-1-cyano-1-nitroethenes. The detailed exploration of the reaction paths indicates a polar, stepwise reaction mechanism through the zwitterionic intermediate. Using bonding evolution theory (BET), we have deciphered the molecular mechanism of the [4 + 3] cycloaddition reaction between E-2-phenyl-1-cyano-1-nitroethene and Z-C-phenyl-N-methylnitrone. The BET study has revealed that the formation of two CO single bonds takes place in the same way, through the depopulation of NC and CC bonding regions and monosynaptic basins, respectively. The first O1C7 single bond was formed in the sixth phase, while the second C3O4 bond was formed in the last ninth phase.
密度泛函理论计算研究表明,通过涉及Z-C-芳基-N-甲基硝酮和E-2-芳基-1-氰基-1-硝基乙烯的环加成反应合成七元内硝酮是可能的。对反应路径的详细探索表明,该反应通过两性离子中间体以极性、逐步的反应机理进行。使用键演化理论(BET),我们解析了E-2-苯基-1-氰基-1-硝基乙烯与Z-C-苯基-N-甲基硝酮之间[4 + 3]环加成反应的分子机理。BET研究表明,两个CO单键的形成方式相同,分别通过NC和CC键合区域以及单突触盆地的去占据过程。第一个O1C7单键在第六阶段形成,而第二个C3O4键在最后第九阶段形成。