Pazio A, Woźniak K, Grela K, Trzaskowski B
Centre of New Technologies, University of Warsaw, 02-097 Warszawa, Poland.
Biological and Chemical Research Centre, Department of Chemistry, University of Warsaw, 02-093 Warszawa, Poland.
Dalton Trans. 2015 Dec 14;44(46):20021-6. doi: 10.1039/c5dt03446a.
We used the density functional theory to evaluate the suitability of nitrenium ions and trivalent boron ligands as analogues of N-heterocyclic carbenes in ruthenium-based metathesis catalysts. We demonstrate that these analogues induce only minor structural changes in Hoveyda-Grubbs-like precatalysts, but have major impact on precatalyst initiation. Nitrenium ion-modified precatalysts are characterized by a weak Ru-N bond resulting in a relatively strong Ru-O bond and large free energy barriers for initiation, making them good candidates for efficient latent Ru-based catalysts. On the other hand the trivalent boron ligand, bearing a formal -1 charge, binds strongly to the ruthenium ion, weakening the Ru-O bond and facilitating its dissociation, to promote fast reaction initiation. We show that the calculated bond dissociation energy of the Ru-C/N/B bond may serve as an accurate indicator of the Ru-O bond strength and the rate of metathesis initiation.
我们使用密度泛函理论来评估氮鎓离子和三价硼配体作为基于钌的复分解催化剂中氮杂环卡宾类似物的适用性。我们证明,这些类似物在类霍维达-格鲁布斯预催化剂中仅引起微小的结构变化,但对预催化剂的引发有重大影响。氮鎓离子修饰的预催化剂的特点是Ru-N键较弱,导致Ru-O键相对较强,引发的自由能垒较大,使其成为高效潜在钌基催化剂的良好候选物。另一方面,带有形式-1电荷的三价硼配体与钌离子强烈结合,削弱Ru-O键并促进其解离,从而促进快速反应引发。我们表明,计算得到的Ru-C/N/B键的键解离能可以作为Ru-O键强度和复分解引发速率的准确指标。