van Dam Annemieke, van Schendel Robin, Gangarapu Satesh, Zuilhof Han, Smulders Maarten M J
Laboratory of Organic Chemistry, Wageningen University, Stippeneng 4, 6708WE, Wageningen, The Netherlands.
School of Pharmaceutical Sciences and Technology, Tianjin University, 92 Weijin Road, Tianjin, 300072, P.R. China.
Chemistry. 2023 Nov 2;29(61):e202301795. doi: 10.1002/chem.202301795. Epub 2023 Sep 27.
The imine bond is among the most applied motifs in dynamic covalent chemistry. Although its uses are varied and often involve coordination to a transition metal for stability, mechanistic studies on imine exchange reactions so far have not included metal coordination. Herein, we investigated the condensation and transimination reactions of an Fe -coordinated diimine pyridine pincer, employing wB97XD/6-311G(2d,2p) DFT calculations in acetonitrile. We first experimentally confirmed that Fe is strongly coordinated by these pincers, and is thus a justified model ion. When considering a four-membered ring-shaped transition state for proton transfers, the required activation energies for condensation and transimination reaction exceeded the values expected for reactions known to be spontaneous at room temperature. The nature of the incoming and exiting amines and the substituents on the para-position of the pincer had no effect on this. Replacing Fe with Zn or removing it altogether did not reduce it either. However, the addition of two ethylamine molecules lowered the energy barriers to be compatible with experiment (19.4 and 23.2 kcal/mol for condensation and transimination, respectively). Lastly, the energy barrier of condensation of a non-coordinated pincer was significantly higher than found for Fe -coordinating pincers, underlining the catalyzing effect of metal coordination on imine exchange reactions.
亚胺键是动态共价化学中应用最为广泛的结构单元之一。尽管其用途多样,且常常涉及与过渡金属配位以实现稳定性,但迄今为止,关于亚胺交换反应的机理研究尚未涉及金属配位。在此,我们采用wB97XD/6 - 311G(2d,2p)密度泛函理论计算方法,在乙腈中研究了铁配位的二亚胺吡啶钳形配体的缩合和转亚胺化反应。我们首先通过实验证实铁与这些钳形配体形成了强配位,因此是一个合理的模型离子。当考虑质子转移的四元环状过渡态时,缩合和转亚胺化反应所需的活化能超过了已知在室温下自发进行的反应所预期的值。进入和离去胺的性质以及钳形配体对位上的取代基对此均无影响。用锌取代铁或完全去除铁也不会降低活化能。然而,加入两个乙胺分子降低了能垒,使其与实验结果相符(缩合和转亚胺化反应的能垒分别为19.4和23.2 kcal/mol)。最后,未配位的钳形配体缩合的能垒显著高于铁配位钳形配体的能垒,这突出了金属配位对亚胺交换反应的催化作用。