Thompson Rick, Tran Ba L, Ghosh Soumya, Chen Chun-Hsing, Pink Maren, Gao Xinfeng, Carroll Patrick J, Baik Mu-Hyun, Mindiola Daniel J
Department of Chemistry and Molecular Structure Center, Indiana University , Bloomington, Indiana 47405, United States.
Inorg Chem. 2015 Mar 16;54(6):3068-77. doi: 10.1021/acs.inorgchem.5b00302. Epub 2015 Mar 2.
In this study we enumerate the reactivity for two molecular vanadium nitrido complexes of [(nacnac)V≡N(X)] formulation [nacnac = (Ar)NC(Me)CHC(Me)(Ar)(-), Ar = 2,6-(CHMe2)2C6H3); X(-) = OAr (1) and N(4-Me-C6H4)2 (Ntolyl2) (2)]. Density functional theory calculations and reactivity studies indicate the nitride motif to have nucleophilic character, but where the nitrogen atom can serve as a conduit for electron transfer, thus allowing the reduction of the vanadium(V) metal ion with concurrent oxidation of the incoming substrate. Silane, H2SiPh2, readily converts the nitride ligand in 1 into a primary silyl-amide functionality with concomitant two-electron reduction at the vanadium center to form the complex [(nacnac)V{N(H)SiHPh2}(OAr)] (3). Likewise, addition of the B-H bond in pinacolborane to the nitride moiety in 2 results in formation of the boryl-amide complex [(nacnac)V{N(H)B(pinacol)}(Ntolyl2)] (4). In addition to spectroscopic data, complexes 3 and 4 were also elucidated structurally by single-crystal X-ray diffraction analysis. One-electron reduction of 1 with 0.5% Na/Hg on a preparative scale allowed for the isolation and structural determination of an asymmetric bimolecular nitride radical anion complex having formula [Na]2[(nacnac)V(N)(OAr)]2 (5), in addition to room-temperature solution X-band electron paramagnetic resonance spectroscopic studies.
在本研究中,我们列举了两种分子式为[(nacnac)V≡N(X)]的分子钒氮配合物的反应活性[nacnac = (Ar)NC(Me)CHC(Me)(Ar)(-),Ar = 2,6-(CHMe2)2C6H3;X(-) = OAr (1) 和N(4-Me-C6H4)2 (Ntolyl2) (2)]。密度泛函理论计算和反应活性研究表明,氮化物基团具有亲核特性,但其中氮原子可作为电子转移的通道,从而使钒(V)金属离子发生还原,同时使进入的底物发生氧化。硅烷H2SiPh2能轻易地将1中的氮化物配体转化为伯硅烷基酰胺官能团,同时在钒中心发生双电子还原,形成配合物[(nacnac)V{N(H)SiHPh2}(OAr)] (3)。同样,频哪醇硼烷中的B-H键加成到2中的氮化物部分,会导致硼基酰胺配合物[(nacnac)V{N(H)B(pinacol)}(Ntolyl2)] (4)的形成。除光谱数据外,配合物3和4还通过单晶X射线衍射分析进行了结构解析。在制备规模上用0.5%的Na/Hg对1进行单电子还原,除了进行室温溶液X波段电子顺磁共振光谱研究外,还实现了具有分子式[Na]2[(nacnac)V(N)(OAr)]2 (5)的不对称双分子氮化物自由基阴离子配合物的分离和结构测定。