Center for Catalysis Research & Innovation and Department of Chemistry, University of Ottawa, Ontario, Canada.
J Am Chem Soc. 2011 Sep 7;133(35):14054-62. doi: 10.1021/ja204767a. Epub 2011 Aug 15.
A versatile Ru-BINO building block is reported, which offers a straightforward entry point into the chemistry of atropisomeric binaphtholate complexes of ruthenium. Reaction of RuCl(2)(PPh(3))(3)6a with Tl(2)((S)-BINO) affords Ru((S)-BINO)(PPh(3))(2)7 as a mixture of isomers: in 7', the BINO ligand is bound via η(3)-CCO,η(1)-O' donors, and in symmetrical 7″, via η(3)-CCO,η(3)-O'C'C' interactions. The bis(enolate) BINO bonding mode in the latter, not previously observed for any metal, underscores the remarkable geometric and electronic flexibility of the binaphtholate moiety. The BINO ligand proves able to stabilize complexes containing as few as two, and as many as four, additional ligands in 7 and its derivatives, enabling a synthetic versatility that contrasts with that of the superficially similar o-catecholate complex Ru(o-cat)(PPh(3))(3). As with the important achiral Ru precursor 6a, complex 7 undergoes facile transformation into a range of products under mild conditions, including acetonitrile, pyridine, and vinylidene derivatives. Single-crystal X-ray structures are reported for three of these complexes: Ru(η(3),η(3)-(S)-BINO)(PPh(3))(2)7″, Ru(η(3),η(1)-(S)-BINO)(PPh(3))(2)(MeCN) 9, and Ru(η(3),η(1)-(S)-BINO)(PPh(3))(py)(2)11. (13)C{(1)H} NMR signatures are proposed for new and known BINO coordination modes (η(1)-O,η(1)-O'; η(1)-C1,η(1)-O'; η(3)-CCO,η(3)-O'C'C'; η(3)-CCO,η(1)-O'; η(6)-C(6),η(1)-O'), as a potential aid to further developments in late-metal BINO chemistry.
一种多功能的 Ru-BINO 建筑块被报道,它为钌的对映异构BINAP 配合物的化学提供了一个直接的切入点。RuCl2(PPh3)36a 与 Tl2((S)-BINO)反应得到 Ru((S)-BINO)(PPh3)27,它是异构体的混合物:在 7'中,BINAP 配体通过 η(3)-CCO、η(1)-O'供体结合,而在对称的 7″中,通过 η(3)-CCO、η(3)-O'C'C'相互作用结合。在后一种情况下,双(烯醇化物)BINAP 键合模式以前在任何金属中都没有观察到,突出了BINAP 部分的显著的几何和电子灵活性。BINAP 配体能够稳定含有两个、四个甚至更多额外配体的配合物,这使得它具有合成多功能性,与表面相似的 o-邻苯二酚配合物 Ru(o-cat)(PPh3)3 形成对比。与重要的非手性 Ru 前体 6a 一样,7 容易在温和条件下转化为一系列产物,包括乙腈、吡啶和亚乙烯基衍生物。这些配合物中的三种的单晶 X 射线结构得到了报道:Ru(η(3),η(3)-(S)-BINO)(PPh3)27″、Ru(η(3),η(1)-(S)-BINO)(PPh3)2(MeCN)9 和 Ru(η(3),η(1)-(S)-BINO)(PPh3)(py)211。提出了新的和已知的 BINO 配位模式(η(1)-O、η(1)-O';η(1)-C1、η(1)-O';η(3)-CCO、η(3)-O'C'C';η(3)-CCO、η(1)-O';η(6)-C(6)、η(1)-O')的 (13)C{(1)H}NMR 特征,作为进一步发展后期金属 BINO 化学的潜在辅助手段。