Kolmer Andreas, Kaltschnee Lukas, Schmidts Volker, Peeck Lars H, Plenio Herbert, Thiele Christina M
Clemens-Schöpf-Institut für Organische Chemie und Biochemie, Technische Universität Darmstadt, Petersenstrasse 22, 64287, Darmstadt, Germany.
Magn Reson Chem. 2013 Nov;51(11):695-700. doi: 10.1002/mrc.4002. Epub 2013 Sep 3.
There has been much debate about the σ-donor and π-acceptor properties of N-heterocyclic carbenes (NHCs). While a lot of synthetic modifications have been performed with the goal of optimizing properties of the catalyst to tune reactivity in various transformations (e.g. metathesis), direct methods to characterize σ-donor and π-acceptor properties are still few. We believe that dynamic NMR spectroscopy can improve understanding of this aspect. Thus, we investigated the intramolecular dynamics of metathesis precatalysts bearing two NHCs. We chose four systems with one identical NHC ligand (N,N'-Bis(2,4,6-trimethylphenyl)-imidazolinylidene (SIMes) in all four cases) and NHC(ewg) ligands bearing four different electron-withdrawing groups (ewg). Both rotational barriers of the respective Ru-NHC-bonds change significantly when the electron density of one of the NHCs (NHC(ewg)) is modified. Although it is certainly not possible to fully dissect σ-donor and π-acceptor portions of the bonding situations in the respective Ru-NHC-bond via dynamic NMR spectroscopy, our studies nevertheless show that the analysis of the rotation around the Ru-SIMes-bond can be used as a spectroscopic parameter complementary to cyclic voltammetry. Surprisingly, we observed that the rotation around the Ru-NHC(ewg)-bond shows the same trend as the initiation rate of a ring-closing metathesis of the four investigated bis-NHC-complexes.
关于氮杂环卡宾(NHCs)的σ供体和π受体性质一直存在很多争论。虽然已经进行了许多合成修饰,目的是优化催化剂的性质以调节各种转化反应(如复分解反应)中的反应活性,但直接表征σ供体和π受体性质的方法仍然很少。我们认为动态核磁共振光谱可以增进对这方面的理解。因此,我们研究了带有两个NHCs的复分解预催化剂的分子内动力学。我们选择了四个体系,在所有四种情况下都有一个相同的NHC配体(N,N'-双(2,4,6-三甲基苯基)-咪唑啉亚基(SIMes))以及带有四个不同吸电子基团(ewg)的NHC(ewg)配体。当其中一个NHC(NHC(ewg))的电子密度发生改变时,相应Ru-NHC键的旋转势垒都会发生显著变化。虽然通过动态核磁共振光谱肯定不可能完全剖析各个Ru-NHC键的键合情况中的σ供体和π受体部分,但我们的研究仍然表明,围绕Ru-SIMes键的旋转分析可以用作与循环伏安法互补的光谱参数。令人惊讶的是,我们观察到围绕Ru-NHC(ewg)键的旋转与所研究的四种双NHC配合物的闭环复分解引发速率显示出相同的趋势。