Key Laboratory of Functionalized Molecular Solids, Ministry of Education, Anhui Laboratory of Molecule-Based Materials, Institute of Organic Chemistry, School of Chemistry and Materials Science, Anhui Normal University, Wuhu, Anhui 241000, P. R. China.
Dalton Trans. 2014 Feb 14;43(6):2521-33. doi: 10.1039/c3dt51107c. Epub 2013 Dec 6.
The reactions of different pyrrolyl-functionalized indoles with rare-earth metal(III) amides [(Me3Si)2N]3RE(III)(μ-Cl)Li(THF)3 (RE = Yb, Er, Dy, Eu, Y) produced different kinds of rare-earth metal amido complexes. Reactions of N-((1H-pyrrol-2-yl)methylene)-2-(1H-indol-3-yl)ethanamine with rare-earth metal amides [(Me3Si)2N]3RE(III)(μ-Cl)Li(THF)3 (RE = Yb, Er, Dy, Eu, Y) in toluene or THF at temperatures of 75-80 °C afforded the novel trinuclear rare-earth metal amido complexes incorporating the indolyl ligand in μ-η(5):η(1) bonding modes and a μ3-O group, which is believed to originate from cleavage of the THF ring based on experimental results. Reactions of 2-(1H-indol-3-yl)-N-((1-methyl-1H-pyrrol-2-yl)methylene)ethanamine with rare-earth metal(III) amides [(Me3Si)2N]3RE(III)(μ-Cl)Li(THF)3 (RE = Yb, Dy) produced mononuclear ytterbium and dysprosium amides having the indolyl ligand in an η(1) bonding fashion. The results indicate that substituents not only have an influence on reactivity, but also have an influence on the bonding of the indolyl ligands with metals. The catalytic activities of the novel lanthanide amido complexes for the hydrophosphonylation of both aromatic and aliphatic aldehydes and ketones were explored. The results indicate that these complexes display a high catalytic activity for the C-P bond formation under mild conditions when using low catalyst loadings (0.1 mol% for aldehydes and ketones). Thus, it provides a potential way to prepare α-hydroxy phosphonates.
不同吡咯基功能化吲哚与稀土金属(III)酰胺[(Me3Si)2N]3RE(III)(μ-Cl)Li(THF)3(RE=Yb、Er、Dy、Eu、Y)反应生成不同种类的稀土金属酰胺配合物。N-((1H-吡咯-2-基)亚甲基)-2-(1H-吲哚-3-基)乙胺与稀土金属酰胺[(Me3Si)2N]3RE(III)(μ-Cl)Li(THF)3(RE=Yb、Er、Dy、Eu、Y)在甲苯或 THF 中于 75-80°C 反应得到新型三核稀土金属酰胺配合物,其中吲哚配体以μ-η(5):η(1)键合模式和一个μ3-O 基团结合,根据实验结果,该基团被认为是 THF 环断裂的产物。2-(1H-吲哚-3-基)-N-((1-甲基-1H-吡咯-2-基)亚甲基)乙胺与稀土金属(III)酰胺[(Me3Si)2N]3RE(III)(μ-Cl)Li(THF)3(RE=Yb、Dy)反应生成单核镱和镝酰胺,其中吲哚配体以η(1)键合方式结合。结果表明,取代基不仅对反应性有影响,而且对吲哚配体与金属的键合也有影响。新型镧系元素酰胺配合物对芳香族和脂肪族醛酮的膦酰化反应的催化活性进行了研究。结果表明,这些配合物在使用低催化剂负载量(醛酮为 0.1mol%)的温和条件下对 C-P 键的形成具有很高的催化活性。因此,它为制备α-羟基膦酸酯提供了一种潜在的方法。