Reactivity and Structure of a Bis-phenolate Niobium NHC Complex

IF 3.3 Q2 CHEMISTRY, MULTIDISCIPLINARY
Florian R. Neururer, Konstantin Huter, Michael Seidl and Stephan Hohloch*, 
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Abstract

We report the facile synthesis of a rare niobium(V) imido NHC complex with a dianionic OCO-pincer benzimidazolylidene ligand (L1) with the general formula [NbL1(NtBu)PyCl] 1-Py. We achieved this by in situ deprotonation of the corresponding azolium salt [H3L1][Cl] and subsequent reaction with [Nb(NtBu)Py2Cl3]. The pyridine ligand in 1-Py can be removed by the addition of B(C6F5)3 as a strong Lewis acid leading to the formation of the pyridine-free complex 1. In contrast to similar vanadium(V) complexes, complex 1-Py was found to be a good precursor for various salt metathesis reactions, yielding a series of chalcogenido and pnictogenido complexes with the general formula [NbL1(NtBu)Py(EMes)] (E = O (2), S (3), NH (4), and PH (5)). Furthermore, complex 1-Py can be converted to alkyl complex (6) with 1 equiv of neosilyl lithium as a transmetallation agent. Addition of a second equivalent yields a new trianionic supporting ligand on the niobium center (7) in which the benzimidazolylidene ligand is alkylated at the former carbene carbon atom. The latter is an interesting chemically “noninnocent” feature of the benzimidazolylidene ligand potentially useful in catalysis and atom transfer reactions. Addition of mesityl lithium to 1-Py gives the pyridine-free aryl complex 8, which is stable toward “overarylation” by an additional equivalent of mesityl lithium. Electrochemical investigation revealed that complexes 1-Py and 1 are inert toward reduction in dichloromethane but show two irreversible reduction processes in tetrahydrofuran as a solvent. However, using standard reduction agents, e.g., KC8, K-mirror, and Na/Napht, no reduced products could be isolated. All complexes have been thoroughly studied by various techniques, including 1H-, 13C{1H}-, and 1H-15N HMBC NMR spectroscopy, IR spectroscopy, and X-ray diffraction analysis.

Abstract Image

双酚酸铌NHC配合物的反应性和结构
我们报道了用通式为[NbL1(NtBu)PyCl]1-Py的二元OCO钳形苯并咪唑亚基配体(L1)简单合成稀有铌(V)酰亚胺-NHC络合物。我们通过相应的唑鎓盐[H3L1][Cl]的原位去质子化以及随后与[Nb(NtBu)Py2Cl3]的反应来实现这一点。1-Py中的吡啶配体可以通过加入作为强路易斯酸的B(C6F5)3来去除,从而形成不含吡啶的络合物1。与类似的钒(V)配合物相比,发现配合物1-Py是各种盐复分解反应的良好前体,产生了一系列具有通式[NbL1(NtBu)Py(EMes)](E=O(2)、S(3)、NH(4)和PH(5))的硫族化物和磷原化物。此外,配合物1-Py可以用1当量的新甲硅烷基锂作为转移剂转化为烷基配合物(6)。添加第二当量在铌中心(7)上产生新的三元支持配体,其中苯并咪唑亚基配体在前卡宾碳原子处烷基化。后者是苯并咪唑亚基配体的一个有趣的化学“非无害”特征,可能用于催化和原子转移反应。将均三甲苯锂添加到1-Py中得到不含吡啶的芳基络合物8,该络合物通过额外当量的均三甲苯李稳定地进行“过芳基化”。电化学研究表明,配合物1-Py和1在二氯甲烷中对还原是惰性的,但在四氢呋喃溶剂中表现出两个不可逆的还原过程。然而,使用标准还原剂,例如KC8、K-mirror和Na/Napht,不能分离出还原产物。所有的配合物都已经通过各种技术进行了彻底的研究,包括1H-,13C{1H}-,以及1H-15N HMBC NMR光谱、IR光谱和X射线衍射分析。
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来源期刊
ACS Organic & Inorganic Au
ACS Organic & Inorganic Au 有机化学、无机化学-
CiteScore
4.10
自引率
0.00%
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0
期刊介绍: ACS Organic & Inorganic Au is an open access journal that publishes original experimental and theoretical/computational studies on organic organometallic inorganic crystal growth and engineering and organic process chemistry. Short letters comprehensive articles reviews and perspectives are welcome on topics that include:Organic chemistry Organometallic chemistry Inorganic Chemistry and Organic Process Chemistry.
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