Planar-Locked Ru-PNN Catalysts in 1-Phenylethanol Dehydrogenation

被引:9
作者
Fanara, Paul M. [1 ]
MacMillan, Samantha N. [2 ]
Lacy, David C. [1 ]
机构
[1] Univ Buffalo, Dept Chem, Buffalo, NY 14260 USA
[2] Cornell Univ, Dept Chem & Chem Biol, Ithaca, NY 14853 USA
基金
美国国家科学基金会;
关键词
MARKOVNIKOV REDUCTIVE HYDRATION; RUTHENIUM-COMPLEX; EFFICIENT HYDROGENATION; BOND ACTIVATION; ALCOHOLS; LIGAND; MECHANISM; METHANOL; AMIDES; AMINES;
D O I
10.1021/acs.organomet.0c00327
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Ru-PNN pincer catalysts of the general form [{PNN}Ru(H)(Cl)(CO)] can dehydrogenate alcohols through inner- and outer-sphere mechanisms, but determining the favored path is challenging. To address this challenge, the following planar-locked quinoline-based PNN ligands, which cannot form key inner-sphere transition states and intermediates, were synthesized: 2-((ditertbutylphosphaneyl)methyl)-N,N-diethylquinolin-8-amine (QNP(tBu)), 2-((diisopropylphosphaneyl)methyl)-N,N-diethylquinolin-8-amine (QNP(iPr)), and 2-((diphenylphosphaneyl)methyl)-N,N-diethylquinolin-8-amine (QNP(Ph)). In addition to the quinoline-derived ligands, we also prepared the isoquinoline PNN ligand N-((1-((ditert-butylphosphaneyl)methyl)isoquinolin-3-yl)methyl)-N-ethylethanamine (IsoQNP) and two known picoline- and lutidine-derived ligands 2-((ditert-butylphosphaneyl)methyl)pyridine (PicP) and 2-((ditert-butylphosphaneyl)methyl)-6-methylpyridine (LutP). These six ligands were coordinated to Ru(II) ions to prepare six new complexes of the general formulation [{L}Ru(H)(Cl)(CO)] analogous to Milstein's PNN catalyst precursor (1PyCl). The X-ray structural, NMR, UV-vis, and FTIR spectroscopic properties of the new complexes are similar to parent complex 1PyCl and were used in catalytic 1-phenylethanol acceptor-less and transfer dehydrogenation. The comparative results demonstrate that 1Py outperforms the other catalysts. DFT reaction profiles were computed for 1Py and the planar-locked catalysts. The results suggest that 1Py has access to a lower-energy inner-sphere path, whereas the planar-locked catalysts can only proceed through a high-energy outer-sphere mechanism and may even get trapped in unreactive alkoxide sinks.
引用
收藏
页码:3628 / 3644
页数:17
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