Hare Stephanie R, Tantillo Dean J
Department of Chemistry , University of California - Davis , One Shields Ave Davis , CA 95616 , USA . Email:
Chem Sci. 2017 Feb 1;8(2):1442-1449. doi: 10.1039/c6sc03745c. Epub 2016 Oct 21.
Byproducts of chemical reactions are generally thought to result from the competition between two reaction pathways, each with its own rate-determining transition state structure. We show here, however, that pathways with a single transition state structure followed by a post-transition state bifurcation may also be a source of undesired products, especially those whose appearance is unexpected. The viability of this scenario for intramolecular C-H insertion reactions affording β-lactones Rh-carbenoid intermediates is assessed through quantum chemical calculations on potential energy surfaces and quasi-classical molecular dynamics simulations. It appears that, in these cases, the rhodium catalyst is to blame for the accessibility of a second, unintended, pathway following the transition state structure for β-lactone formation that leads to fragmentation to a ketene and carbonyl compound. If an unexpected product is formed a post-transition state bifurcation, conventional strategies for suppressing its formation are unlikely to succeed. Guidelines for recognizing the presence of a post-transition state bifurcation are described here, along with hints at means for controlling product distributions.
化学反应的副产物通常被认为是由两条反应途径之间的竞争导致的,每条途径都有其自身的速率决定过渡态结构。然而,我们在此表明,具有单一过渡态结构随后是过渡态后分叉的途径也可能是不需要的产物的来源,尤其是那些其出现出乎意料的产物。通过对势能面的量子化学计算和准经典分子动力学模拟,评估了这种情况对于提供β-内酯Rh-卡宾中间体的分子内C-H插入反应的可行性。看来,在这些情况下,铑催化剂应归咎于在β-内酯形成的过渡态结构之后出现的第二条意外途径的可及性,该途径导致裂解为乙烯酮和羰基化合物。如果在过渡态后分叉形成了意外产物,抑制其形成的传统策略不太可能成功。本文描述了识别过渡态后分叉存在的指导方针,以及控制产物分布方法的提示。