de Aguiar Sara R M M, Öztopcu Özgür, Stöger Berthold, Mereiter Kurt, Veiros Luis F, Pittenauer Ernst, Allmaier Günter, Kirchner Karl
Institute of Applied Synthetic Chemistry, Vienna University of Technology, Getreidemarkt 9, A-1060 Vienna, Austria.
Dalton Trans. 2014 Oct 21;43(39):14669-79. doi: 10.1039/c4dt01932f.
In the present study a series of six-coordinate neutral 16e halocarbonyl Mo(ii) complexes of the type [Mo(PNP(Me)-iPr)(CO)X2] (X = I, Br, Cl), featuring the PNP pincer ligand N,N'-bis(diisopropylphosphino)-N,N'-dimethyl-2,6-diaminopyridine (PNP(Me)-iPr), were prepared and fully characterized. The synthesis of these complexes was accomplished by different methodologies depending on the halide ligands. For X = I and Br, [Mo(PNP(Me)-iPr)(CO)I2] and [Mo(PNP(Me)-iPr)(CO)Br2] were obtained by reacting [Mo(PNP(Me)-iPr)(CO)3] with stoichiometric amounts of I2 and Br2, respectively. In the case of X = Cl, [Mo(PNP(Me)-iPr)(CO)Cl2] was afforded by the reaction of [Mo(CO)4(μ-Cl)Cl]2 with 1 equiv. of PNP(Me)-iPr. The equivalent procedure also worked for X = Br. The modification of the 2,6-diaminopyridine scaffold by introducing NMe instead of NH spacers between the aromatic pyridine ring and the phosphine moieties changed the steric properties of the PNP-iPr ligand significantly. While in the present case exclusively neutral six-coordinate complexes of the type [Mo(PNP(Me)-iPr)(CO)X2] were obtained, with the parent PNP-iPr ligand, i.e. featuring NH spacers, cationic seven-coordinate complexes of the type [Mo(PNP-iPr)(CO)3X]X were afforded. Upon treatment of [Mo(PNP(Me)-iPr)(CO)X2] (X = Br, Cl) with Ag(+) in CH3CN, the cationic complexes Mo(PNP(Me)-iPr)(CO)(CH3CN)X were formed. Halide abstraction from [Mo(PNP(Me)-iPr)(CO)Cl2] in THF-CH2Cl2 afforded Mo(PNP(Me)-iPr)(CO)(THF)Cl. In keeping with the facile synthesis of monocationic complexes preliminary ESI-MS and DFT/B3LYP studies revealed that one halide ligand in complexes [Mo(PNP(Me)-iPr)(CO)X2] is labile forming cationic fragments Mo(PNP(Me)-iPr)(CO)X which react with molecular oxygen in parallel pathways to yield mono and dioxo Mo(iv) and Mo(vi) species. Structures of representative complexes were determined by X-ray single crystal analyses.
在本研究中,制备并全面表征了一系列通式为[Mo(PNP(Me)-iPr)(CO)X₂](X = I、Br、Cl)的六配位中性16电子卤代羰基钼(II)配合物,其具有PNP钳形配体N,N'-双(二异丙基膦基)-N,N'-二甲基-2,6-二氨基吡啶(PNP(Me)-iPr)。这些配合物的合成根据卤化物配体采用不同方法完成。对于X = I和Br,[Mo(PNP(Me)-iPr)(CO)I₂]和[Mo(PNP(Me)-iPr)(CO)Br₂]分别通过使[Mo(PNP(Me)-iPr)(CO)₃]与化学计量的I₂和Br₂反应得到。当X = Cl时,[Mo(PNP(Me)-iPr)(CO)Cl₂]由[Mo(CO)₄(μ-Cl)Cl]₂与1当量的PNP(Me)-iPr反应制得。同样的方法对X = Br也适用。通过在芳族吡啶环和膦部分之间引入NMe而非NH间隔基对2,6-二氨基吡啶骨架进行修饰,显著改变了PNP-iPr配体的空间性质。在本研究中仅得到了通式为[Mo(PNP(Me)-iPr)(CO)X₂]的中性六配位配合物,而对于母体PNP-iPr配体(即具有NH间隔基),得到的是通式为[Mo(PNP-iPr)(CO)₃X]X的阳离子七配位配合物。在乙腈中用Ag⁺处理[Mo(PNP(Me)-iPr)(CO)X₂](X = Br、Cl)时,形成了阳离子配合物[Mo(PNP(Me)-iPr)(CO)(CH₃CN)X]⁺。在四氢呋喃 - 二氯甲烷中从[Mo(PNP(Me)-iPr)(CO)Cl₂]中脱去卤化物得到[Mo(PNP(Me)-iPr)(CO)(THF)Cl]⁺。与单阳离子配合物的简便合成一致,初步的电喷雾电离质谱(ESI-MS)和密度泛函理论/ B3LYP研究表明,配合物[Mo(PNP(Me)-iPr)(CO)X₂]中的一个卤化物配体不稳定,会形成阳离子碎片[Mo(PNP(Me)-iPr)(CO)X]⁺,其通过平行途径与分子氧反应生成单氧和双氧钼(IV)及钼(VI)物种。通过X射线单晶分析确定了代表性配合物的结构。