Pal Amrita, Vanka Kumar
Physical Chemistry Division, National Chemical Laboratory, Pune-411008, India.
Dalton Trans. 2013 Oct 14;42(38):13866-73. doi: 10.1039/c3dt51677f. Epub 2013 Aug 2.
There has been considerable interest in recent times to develop transition metal complex systems that can demonstrate metal-ligand cooperativity. It has recently been shown (Wass et al., J. Am. Chem. Soc., 2011, 133, 18463) that early transition metals can cooperate with ligands carrying phosphines as pendant groups, working as metal analogues to frustrated Lewis pairs (FLPs) to mediate in a variety of important reactions. What the current work attempts to do is to show how this concept of metal containing FLPs can be expanded to include late transition metal complexes as well: complexes that have been modified from existing systems that serve as efficient catalysts for homogeneous polymerization. A modified palladium complex has been considered in this regard as an example of a potential late transition metal FLP and studied with full quantum mechanical calculations. The calculations indicate that this complex would be effective at catalyzing ammonia borane dehydrogenation. The possibility of competing side reactions such as reductive elimination have also been considered, and it has been found that such processes would also yield stable products which could act as an FLP in catalyzing reactions such as the dehydrogenation of ammonia borane. The current work therefore expands the scope of metal containing FLPs to include late transition metals and demonstrates computationally the potential of such complexes for exhibiting metal-ligand cooperativity.
近年来,人们对开发能够展现金属-配体协同作用的过渡金属络合物体系产生了浓厚兴趣。最近有研究表明(沃斯等人,《美国化学会志》,2011年,第133卷,第18463页),早期过渡金属能够与带有膦作为侧基的配体协同作用,起到受阻路易斯酸碱对(FLP)的金属类似物的作用,从而介导各种重要反应。当前工作旨在展示含FLP的金属这一概念如何能够扩展到包括晚期过渡金属络合物:这些络合物是从现有的作为均相聚合高效催化剂的体系改性而来。在这方面,一种改性钯络合物被视为潜在晚期过渡金属FLP的一个例子,并通过全量子力学计算进行了研究。计算结果表明,这种络合物在催化氨硼烷脱氢反应中是有效的。还考虑了诸如还原消除等竞争性副反应的可能性,并且发现这些过程也会产生稳定产物,这些产物在催化诸如氨硼烷脱氢等反应时可以充当FLP。因此,当前工作将含FLP的金属的范围扩展到包括晚期过渡金属,并通过计算证明了此类络合物展现金属-配体协同作用的潜力。