Planells Alicia Rey, Ferao Arturo Espinosa
Depto. Quı́mica Orgánica, Facultad de Quı́mica, Campus de Espinardo, Universidad de Murcia, 30100 Murcia, Spain.
Inorg Chem. 2020 Aug 17;59(16):11503-11513. doi: 10.1021/acs.inorgchem.0c01316. Epub 2020 Jul 31.
Accurate ring strain energy (RSE) data for parent (CH)X rings are reported, where X are group 13-16 elements (El) in their lowest oxidation state, from the second to the sixth row, with their covalence completed by bonds to H. They are obtained from appropriate homodesmotic and hyper-homodesmotic reactions at different levels up to the CCSD(T) level, thus providing a benchmark of high-quality reference RSE values, as well as acceptably accurate faster lower-level options. Derivatives of indium, thallium, and lead cannot be properly described by a three-member ring connectivity, because they display a unique donor-acceptor structure from an ethylene π(C═C) orbital to an empty p orbital of a metallylene subunit. The RSE of groups 13 and 14 heterocycles increases on descending in the group (except for Ga and Ge), while it decreases for groups 15 and 16. The latter is presumably due to a strain-releasing mechanism favored by the increase of p-character at the sp-type atomic orbital used by El in the endocyclic El-C bonds, %p(El), originated by the tendency of the El lone pairs in groups 15-16 to increase their s-character. This strain-releasing mechanism does not exist in heavier tetrels, which keep almost unchanged the p-character in the endocyclic bonds at El, whereas for triels the p-character is still lower owing to their sp-like hybridization. Remarkable linear correlations were found between the RSE and either the above-mentioned %p(El), the distal C-C bond distance or the relaxed force constants for the endocyclic bond angles.
报告了母体(CH)X环的精确环应变能(RSE)数据,其中X是第2至第6周期处于最低氧化态的13 - 16族元素(El),其共价性通过与H的键来完成。这些数据是通过在不同水平直至CCSD(T)水平的适当等键反应和超等键反应获得的,从而提供了高质量参考RSE值的基准,以及准确度可接受的更快的低水平选项。铟、铊和铅的衍生物不能用三元环连接性来恰当描述,因为它们呈现出一种独特的供体 - 受体结构,从乙烯π(C═C)轨道到亚甲硅烷基亚基的空p轨道。13族和14族杂环的RSE在族内下降时增加(除了镓和锗),而15族和16族的则下降。后者可能是由于一种应变释放机制,该机制受环内El - C键中El使用的sp型原子轨道上p特征的增加所促进,%p(El),这是由15 - 16族中El孤对电子增加其s特征的趋势引起的。这种应变释放机制在较重的四价元素中不存在,它们在环内El键中的p特征几乎保持不变,而对于三价元素,由于其类似sp的杂化,p特征仍然较低。在RSE与上述%p(El)、远端C - C键距离或环内键角的松弛力常数之间发现了显著的线性相关性。