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Rational synthesis of normal abnormal and anionic NHC–gallium alkyl complexes: structural stability and isomerization insights

机译:正常异常和阴离子NHC-镓烷基络合物的合理合成:结构稳定性和异构化见解

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摘要

Advancing the rational design of main-group N-heterocyclic carbene complexes, this study reports the synthesis, X-ray crystallographic and NMR spectroscopic characterisation of a novel series of Ga complexes containing neutral or anionic NHC ligands using the unsaturated carbene IPr (IPr = 1,3-bis-(2,6-di-isopropylphenyl)imidazol-2-ylidene). Starting from normal adduct GaR3·IPr (>1) (R = CH2SiMe3), the addition of polar LiR led to the formation of NHC-stabilised gallate species IPr·LiGaR4 (>2), resulting from co-complexation of the single-metal species. Contrastingly, reversing the order of addition of these organometallic reagents, by treating unsaturated free IPr, first with LiR followed by GaR3, furnished novel heteroleptic gallate (THF)2Li[:C{[N(2,6-iPr2C6H3)]2CHCGa(CH2SiMe3)3}] (>3), which contains an anionic NHC ligand acting as an unsymmetrical bridge between the two metals, coordinating through its abnormal C4 position to Ga and through its normal C2 position to Li. Electrophilic interception studies of >3 using methyl triflate (MeOTf), methanol and imidazolium salt (IMes·HCl) led to the isolation and structural elucidation of the two novel neutral abnormal NHC (aNHC) complexes [CH3C{[N(2,6-iPr2C6H3)]2CHCGa(CH2SiMe3)3}] (>4) and aIPr·GaR3 (>5) (aIPr = HC{[N(2,6-iPr2C6H3)]2CHC}). These studies disclose the preference of the anionic IPr ligand present in >3 to react with electrophiles via its C2 position, leaving its Ga–C4 bond intact. Abnormal complex >5 can also be accessed by a thermally induced rearrangement of its normal isomer >1. Combining NMR spectroscopic and kinetic studies with DFT calculations, new light has been shed on this intriguing transformation, which suggests that it occurs via a dissociative mechanism, highlighting the importance of the donor ability of the solvent used in these thermal isomerizations as well as the steric bulk of the substituents on the NHC and the Ga reagent. These findings intimate that relief of the steric hindrance around Ga by forming an abnormal complex is a key driving force behind these rearrangements.
机译:为了合理设计主族N-杂环卡宾配合物,本研究报告了使用不饱和卡宾IPr(IPr = 1)合成的一系列含有中性或阴离子NHC配体的Ga配合物的新系列的合成,X射线晶体学和NMR光谱表征,3-双-(2,6-二异丙基苯基)咪唑-2-亚烷基。从正常加合物GaR3·IPr(> 1 )(R = CH2SiMe3)开始,极性LiR的添加导致形成NHC稳定的没食子酸酯物种IPr·LiGaR4(> 2 ),这是由于单金属物质的复合而产生的。相反,通过先用LiR然后用GaR3处理不饱和游离IPr来逆转这些有机金属试剂的添加顺序,从而提供了新型杂配没食子酸酯(THF)2Li [:C {[N(2,6-iPr2C6H3)] 2CHCGa(CH2SiMe3 )3}](> 3 ),其中包含一个阴离子NHC配体,充当两种金属之间的不对称桥,通过其异常的C4位置配成Ga和通过其正常的C2位置配成Li。使用三氟甲磺酸甲酯(MeOTf),甲醇和咪唑鎓盐(IMes·HCl)对> 3 进行的亲电拦截研究导致了两种新型中性异常NHC(aNHC)配合物[CH3C {[ N(2,6-iPr2C6H 3 )] 2 CHCGa(CH 2 SiMe 3 3 }](> 4 )和aIPr·GaR 3 (> 5 )(aIPr = HC {[N(2,6- iPr 2 C 6 H 3 )] 2 CHC})。这些研究揭示了> 3 中存在的阴离子IPr配体优先通过C2位置与亲电子试剂反应,而使其Ga–C4键保持完整。异常的复合物> 5 也可以通过其正常异构体> 1 的热诱导重排获得。将NMR光谱学和动力学研究与DFT计算相结合,这种有趣的转变产生了新的光,这表明它是通过解离机理发生的,这突出表明了在这些热异构化反应中使用的溶剂的供体能力以及空间位阻的重要性NHC和Ga试剂上的大部分取代基。这些发现表明,通过形成异常复合物来缓解Ga周围的位阻是这些重排背后的关键驱动力。

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