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[(η(5) -1,2,4-tBu3 C5 H2 )Ni(η(3) -P3 )] 对主族亲核试剂的意外反应及还原作用

Unexpected Reactivity of [(η(5) -1,2,4-tBu3 C5 H2 )Ni(η(3) -P3 )] towards Main Group Nucleophiles and by Reduction.

机构信息

Institut für Anorganische Chemie, Universität Regensburg, 93051, Regensburg, Germany.

Nikolaev Institute of Inorganic Chemistry, Siberian Division of RAS, Acad. Lavrentyev str. 3, 630090, Novosibirsk, Russia.

出版信息

Angew Chem Int Ed Engl. 2016 Jun 27;55(27):7702-7. doi: 10.1002/anie.201601775. Epub 2016 Apr 21.

Abstract

The reduction of [Cp'''Ni(η(3) -P3 )] (1; Cp'''=η(5) -1,2,4-tBu3 C5 H2 ) with potassium produces the complex anion (Cp'''Ni)2 (μ,η(2:2) -P8 ) (2), which contains a realgar-like P8 unit. The anionic triple-decker sandwich complex (Cp'''Ni)2 (μ,η(3:3) -P3 ) (3) with a cyclo-P3 middle deck is obtained when 1 is treated with NaNH2 as a nucleophile. Na[3] can subsequently be oxidized with AgOTf to the neutral triple-decker complex [(Cp'''Ni)2 (μ,η(3:3) -P3 )] (4). In contrast, 1 reacts with LiPPh2 to give the anionic compound (Cp'''Ni)2 (μ,η(2:2) -P6 PPh2 ) (5), a complex containing a bicyclic P7 fragment capped by two Cp'''Ni units. Protonation of Li[5] with HBF4 leads to the neutral complex [(Cp'''Ni)2 (μ,η(2:2) -(HP6 PPh2 )] (6). Adding LiNMe2 to 1 results in Cp'''Ni(η(2) -P3 NMe2 ) (7) becoming accessible, a complex which forms as a result of nucleophilic attack at the cyclo-P3 ring of 1. The complexes K2 [2], Na[3], 4, 6, and Li[7] were fully characterized and their structures determined by single-crystal X-ray diffraction.

摘要

用钾还原 [Cp'''Ni(η(3) -P3 )](1;Cp'''=η(5) -1,2,4-tBu3 C5 H2 )生成了含有真实雄黄类似物 P8 单元的阴离子 (Cp'''Ni)2 (μ,η(2:2) -P8 )(2)。当 1 与作为亲核试剂的 NaNH2 反应时,得到阴离子三层夹心配合物 (Cp'''Ni)2 (μ,η(3:3) -P3 )(3),其中中间层为环状-P3。Na[3]可以随后被 AgOTf 氧化为中性三层夹心配合物 [(Cp'''Ni)2 (μ,η(3:3) -P3 )](4)。相比之下,1 与 LiPPh2 反应生成阴离子化合物 (Cp'''Ni)2 (μ,η(2:2) -P6 PPh2 )(5),该化合物含有一个由两个 Cp'''Ni 单元封端的双环 P7 片段。Li[5]用 HBF4 质子化得到中性配合物 [(Cp'''Ni)2 (μ,η(2:2) -(HP6 PPh2 )](6)。向 1 中加入 LiNMe2 可得到 Cp'''Ni(η(2) -P3 NMe2 )(7),这是由于 1 的环-P3 环受到亲核攻击而形成的配合物。配合物 K2 [2]、Na[3]、4、6 和 Li[7] 均通过单晶 X 射线衍射进行了充分的表征和结构测定。

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