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Structurally defined zincated and aluminated complexes of ferrocene made by alkali-metal-synergistic syntheses

机译:通过碱金属协同合成制备的二茂铁在结构上定义为锌和铝的络合物

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摘要

Reaction of ferrocene with 1 or 2 molar equiv of the synergistic-operative bimetallic sodium zincate base TMEDA·Na(μ-TMP)(μ-tBu)Zn(tBu) yields mainly mono- or dizincated complexes TMEDA·Na(μ-TMP)[μ-(C5H4)Fe(C5H5)]ZntBu (1) and [TMEDA·Na(μ-TMP)Zn(tBu)]2(C5H4)2Fe (2). Likewise, the separated pairing of Li(TMP) and (TMP)AliBu2 in the presence of THF can mono- or dimetalate ferrocene in a synergistic two-step lithiation/trans-metal-trapping protocol to give THF·Li(μ-TMP)[μ-(C5H4)Fe(C5H5)]Al(iBu)2 (4) or [THF·Li(μ-TMP)Al(iBu)2]2(C5H4)2Fe (5). In the absence of Lewis donating cosolvents, a 4-fold excess of the sodium zincate appears to produce an unprecedented 4-fold zincated ferrocene of formula Na4(TMP)4Zn4(tBu)4[(C5H3)2Fe] (3), whereas when donor solvent is withheld from the lithium/aluminum pairing, only dimetalation of ferrocene is possible. Tetrametalation seems to be inhibited by the in situ generation of TMP(H) via amido basicity, which then acts as a Lewis donor toward lithium, preventing inverse-crown formation and preferentially forming the Lewis acid–Lewis base adduct [TMP(H)·Li(μ-TMP)Al(iBu)2]2(C5H4)2Fe (6). With the exception of 3, all aforementioned complexes have been characterized by X-ray crystallography, while 1–6 have also been studied by solution NMR spectroscopic studies.
机译:二茂铁与1或2摩尔当量的协同作用双金属锌酸钠碱TMEDA·Na(μ-TMP)(μ-tBu)Zn(tBu)反应生成的主要是单锌或二锌配合物TMEDA·Na(μ-TMP) [μ-(C5H4)Fe(C5H5)] ZntBu(1)和[TMEDA·Na(μ-TMP)Zn(tBu)] 2(C5H4)2Fe(2)。同样,在THF存在下,Li(TMP)和(TMP)AliBu2的分离配对可以以协同的两步锂化/跨金属捕获方案将二茂铁单或双金属化,从而得到THF·Li(μ-TMP) [μ-(C5H4)Fe(C5H5)] Al(iBu)2(4)或[THF·Li(μ-TMP)Al(iBu)2] 2(C5H4)2Fe(5)。在没有路易斯提供助溶剂的情况下,过量4倍的锌酸钠似乎会生成前所未有的4倍式Na4(TMP)4Zn4(tBu)4 [(C5H3)2Fe] [(C5H3)2Fe]的锌化二茂铁(3),而当锂/铝配对中不存在供体溶剂,因此二茂铁只能进行双金属化。四金属化似乎受到酰胺基碱原位生成TMP(H)的抑制,后者随后充当路易斯对锂的供体,阻止了反冠形成并优先形成路易斯酸-路易斯碱加合物[TMP(H)· Li(μ-TMP)Al(iBu)2] 2(C5H4)2Fe(6)。除3外,所有上述配合物均已通过X射线晶体学表征,而1-6已通过溶液NMR光谱学进行了研究。

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