Molteni Giorgio, Ponti Alessandro
Dipartimento di Chimica, Università degli Studi di Milano, Via C. Golgi 19, 20133, Milano, Italy.
Istituto di Scienze e Tecnologie Chimiche "Giulio Natta", Consiglio Nazionale delle Ricerche, Via C. Golgi 19, 20133, Milano, Italy.
Chemphyschem. 2023 Jun 15;24(12):e202300114. doi: 10.1002/cphc.202300114. Epub 2023 Apr 19.
The importance of regioselectivity in 1,3-dipolar cycloadditions (DCs) makes it surprising that no benchmarking study on this problem has appeared. We investigated whether DFT calculations are an accurate tool to predict the regioselectivity of uncatalyzed thermal azide 1,3-DCs. We considered the reaction between HN and 12 dipolarophiles, comprising ethynes HC≡C-R and ethenes H C=CH-R (R=F, OH, NH , Me, CN, CHO), which cover a broad range of electron demand and conjugation ability. We established benchmark data by the W3X protocol [complete-basis-set-extrapolated CCSD(T)-F12 energy with T-(T) and (Q) corrections and MP2-calculated core/valence and relativistic effects] and showed that core/valence effects and high-order excitations are important for accurate regioselectivity. Regioselectivities calculated using an extensive set of density functional approximations (DFAs) were compared with benchmark data. Range-separated and meta-GGA hybrids gave the best results. Good treatment of self-interaction and electron exchange are the key features for accurate regioselectivity. Dispersion correction slightly improves agreement with W3X results. The best DFAs provide the isomeric TS energy difference with an expected error ≈0.7 mh and errors ≈2 mh can occur. The isomer yield provided by the best DFA has an expected error of ±5 %, though errors up to 20 % are not rare. At present, an accuracy of 1-2 % is unfeasible but it seems that we are not far from achieving this goal.
1,3-偶极环加成反应(DCs)中区域选择性的重要性令人惊讶的是,尚未出现关于此问题的基准研究。我们研究了密度泛函理论(DFT)计算是否是预测未催化热叠氮化物1,3-DCs区域选择性的准确工具。我们考虑了HN与12种亲偶极体之间的反应,这些亲偶极体包括乙炔HC≡C-R和乙烯H C=CH-R(R = F、OH、NH 、Me、CN、CHO),它们涵盖了广泛的电子需求和共轭能力。我们通过W3X协议[具有T-(T)和(Q)校正以及MP2计算的核/价和相对论效应的完全基组外推CCSD(T)-F12能量]建立了基准数据,并表明核/价效应和高阶激发对于准确的区域选择性很重要。将使用大量密度泛函近似(DFA)计算的区域选择性与基准数据进行了比较。范围分离和meta-GGA杂化给出了最佳结果。对自相互作用和电子交换的良好处理是准确区域选择性的关键特征。色散校正略微改善了与W3X结果的一致性。最佳的DFA提供的异构体过渡态能量差预期误差约为0.7 mh,可能会出现约2 mh的误差。最佳DFA提供的异构体产率预期误差为±5 %,尽管高达20 %的误差并不罕见。目前,1-2 %的准确度不可行,但似乎我们离实现这一目标并不遥远。