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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Lanthanide tri-benzyl complexes: structural variations and useful precursors to phosphorus-stabilised lanthanide carbenes
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Lanthanide tri-benzyl complexes: structural variations and useful precursors to phosphorus-stabilised lanthanide carbenes

机译:镧系三苄基配合物:磷稳定的镧系元素卡宾的结构变化和有用的前体

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Reaction of [Ln(I)(3)(THF)(4)] (Ln = Ce, Pr) or [Ln(I)(3)(THF)(3.5)] (Ln = Nd, Sm, Gd, Dy, Er) with three equivalents of [KBz] (Bz = CH2C6H5) at 0 degrees C afforded the corresponding lanthanide tri-benzyl complexes [Ln(Bz)(3)(THF)(3)] [Ln = Ce (2), Pr (3), Nd (4), Sm (5), Gd (6), Dy (7), Er (8) La (11)] in 48-75% crystalline yields, with the exception of the redox active samarium complex, which was isolated in poor (20%) yield. Complexes 2-8 were found to adopt distorted octahedral geometries, where the Bz and THF groups are bound in a mutually fac manner in the solid state. Although the series is structurally similar, classification of three structural types can be made on the basis of the lanthanide contraction: (i) complexes which exhibit three eta(2) Ln...C-ipso contacts (1-4, 11); (ii) complexes which show one eta(2) Ln...C-ipso contact (5); (iii) complexes with no multi-hapto interactions (6-8). For ytterbium, the mixed valence, Yb-II/Yb-III complex [Yb-II(Bz)(THF)(5)](+)[Yb-III(Bz)(4)(THF)(2)](-) (9) was reproducibly formed at 0 degrees C and -78 degrees C as a result of partial (50%) Yb-III -> Yb-II reduction with concomitant formation of half an equivalent of 1,2-diphenylethane by oxidative coupling. Tri-valent [Yb(Bz)(3)(THF)(3)] (10) was apparently not formed. The synthetic utility of tri-benzyl lanthanide complexes 2-8 and 11 were tested in reactions with the bis-(iminophosphorano) methane H2C(PPh2NSiMe3)(2) (H-2-BIPM), which afforded [Ln(BIPM)(H-BIPM)] [Ln = La (12), Ce (13), Pr (14), Nd (15), Sm (16), Gd (17)] and [Ln(BIPM)(Bz)(THF)] [Ln = Dy (18), Er (19)]. Compounds 2-9 and 12-19 have been variously characterised by X-ray crystallography, multi-nuclear NMR spectroscopy, FTIR spectroscopy, room temperature Evans method solution magnetic moments and CHN micro-analyses.
机译:[Ln(I)(3)(THF)(4)](Ln = Ce,Pr)或[Ln(I)(3)(THF)(3.5)](Ln = Nd,Sm,Gd,Dy ,Er)在0摄氏度下具有三当量的[KBz](Bz = CH2C6H5),得到相应的镧系元素三苄基配合物[Ln(Bz)(3)(THF)(3)] [Ln = Ce(2), Pr(3),Nd(4),Sm(5),Gd(6),Dy(7),Er(8)La(11)]的结晶产率为48-75%,氧化还原活性sa除外复合物,收率低(20%)。发现配合物2-8采用扭曲的八面体几何形状,其中Bz和THF基团以相互相联的方式以固态键合。尽管该系列在结构上相似,但是可以根据镧系元素的收缩来对三种结构类型进行分类:(i)表现出三个eta(2)Ln ... C-ipso接触的配合物(1-4,11); (ii)表现出一个eta(2)Ln ... C-ipso接触(5)的配合物; (iii)没有多重接触的复合物(6-8)。对于,混合价Yb-II / Yb-III配合物[Yb-II(Bz)(THF)(5)](+)[Yb-III(Bz)(4)(THF)(2)] [ -)(9)在0摄氏度和-78摄氏度下可重现,这是由于部分(50%)Yb-III-> Yb-II还原并通过氧化同时形成了一半当量的1,2-二苯乙烷耦合。显然未形成三价的[Yb(Bz)(3)(THF)(3)](10)。在与双-(亚氨基正膦酸酯)甲烷H2C(PPh2NSiMe3)(2)(H-2-BIPM)的反应中测试了三苄基镧系元素络合物2-8和11的合成效用,得到了[Ln(BIPM)(H -BIPM)] [Ln = La(12),Ce(13),Pr(14),Nd(15),Sm(16),Gd(17)]和[Ln(BIPM)(Bz)(THF)] [Ln = Dy(18),Er(19)]。化合物2-9和12-19通过X射线晶体学,多核NMR光谱,FTIR光谱,室温Evans方法溶液磁矩和CHN微观分析进行了各种表征。

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