Li Yao, Zhang Long, Luo Sanzhong
Center of Basic Molecular Science (CBMS), Department of Chemistry, Tsinghua University, Beijing 100084, China.
ACS Omega. 2022 Feb 10;7(7):6354-6374. doi: 10.1021/acsomega.1c06945. eCollection 2022 Feb 22.
Energetics of reactive intermediates underlies their reactivity. The availability of these data provides a rational basis for understanding and predicting a chemical reaction. We reported here a comprehensive computational study on the energetics of enamine intermediates that are fundamental in carbonyl chemistry. Accurate density functional theory (DFT) calculations were performed to determine the bond energies of enamines and their derived radical intermediates. These efforts led to the compilation of a database of enamine energetics including a thermodynamic index such as free-energy stability, bond dissociation energy (BDE), and acid dissociation constant (p ) as well as a kinetic index such as nucleophilicity and electrophilicity. These data were validated by relating to experimentally determined parameters and their relevance and utility were discussed in the context of modern enamine catalysis. It was found that p values of enamine radical cations correlated well with redox potentials of their parent enamines, the former could be used to rationalize the proton-transfer behavior of enamine radical cations. An analysis of the BDE of enamine radical cations indicated that these species underwent facile β-C-H hydrogen transfer, in line with the known oxidative enamine catalysis. The enamine energetics offers the possibility of a systematic evaluation of the reactivities of enamines and related radicals, which would provide useful guidance in exploring new enamine transformations.
反应中间体的能量学是其反应活性的基础。这些数据的可得性为理解和预测化学反应提供了合理依据。我们在此报告了一项关于烯胺中间体能量学的全面计算研究,烯胺中间体在羰基化学中至关重要。进行了精确的密度泛函理论(DFT)计算以确定烯胺及其衍生自由基中间体的键能。这些工作促成了一个烯胺能量学数据库的汇编,其中包括诸如自由能稳定性、键解离能(BDE)和酸解离常数(p)等热力学指标以及诸如亲核性和亲电性等动力学指标。通过与实验测定的参数相关联对这些数据进行了验证,并在现代烯胺催化的背景下讨论了它们的相关性和实用性。发现烯胺自由基阳离子的p值与其母体烯胺的氧化还原电位密切相关,前者可用于解释烯胺自由基阳离子的质子转移行为。对烯胺自由基阳离子BDE的分析表明,这些物种容易发生β-C-H氢转移,这与已知的氧化烯胺催化一致。烯胺能量学为系统评估烯胺和相关自由基的反应活性提供了可能性,这将为探索新的烯胺转化提供有用的指导。