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硅氢键和硼氢键的加成以及涉及低配位氮钒配合物的氧化还原反应活性。

Addition of Si-H and B-H bonds and redox reactivity involving low-coordinate nitrido-vanadium complexes.

作者信息

Thompson Rick, Tran Ba L, Ghosh Soumya, Chen Chun-Hsing, Pink Maren, Gao Xinfeng, Carroll Patrick J, Baik Mu-Hyun, Mindiola Daniel J

机构信息

Department of Chemistry and Molecular Structure Center, Indiana University , Bloomington, Indiana 47405, United States.

出版信息

Inorg Chem. 2015 Mar 16;54(6):3068-77. doi: 10.1021/acs.inorgchem.5b00302. Epub 2015 Mar 2.

DOI:10.1021/acs.inorgchem.5b00302
PMID:25732980
Abstract

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.

摘要

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。

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