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亚胺硫醇笼状配合物的硫族化物衍生物

Chalcogenide derivatives of imidotin cage complexes.

作者信息

Eisler Dana J, Chivers Tristram

机构信息

Department of Chemistry, University of Calgary, Calgary, AB T2N 1N4, Canada.

出版信息

Chemistry. 2005 Dec 16;12(1):233-43. doi: 10.1002/chem.200500849.

Abstract

Reaction of the secocubane [Sn3(mu2-NHtBu)2(mu2-NtBu)(mu3-NtBu)] (1) with dibutylmagnesium produces the heterobimetallic cubane [Sn3Mg(mu3-NtBu)4] (4) which forms the monochalcogenide complexes of general formula [ESn3Mg(mu3-NtBu)4] (5a, E = Se; 5b, E = Te) upon reaction with elemental chalcogens in THF. By contrast, the reaction of the anionic lithiated cubane [Sn3Li(mu3-NtBu)4]- with the appropriate quantity of selenium or tellurium leads to the sequential chalcogenation of each of the three Sn(II) centres. Pure samples of the mono- or dichalcogenides are, however, best obtained by stoichiometric redistribution reactions of [Sn3Li(mu3-NtBu)4]- and the trichalcogenides [E3Sn3Li(mu3-NtBu)4]- (E = Se, Te). These reactions are conveniently monitored by using 119Sn NMR spectroscopy. The anion [Sn3Li(mu3-NtBu)4]- also acts as an effective chalcogen-transfer reagent in reactions of selenium with the neutral cubane [{Snmu3-N(dipp)}4] (8) (dipp = 2,6-diisopropylphenyl) to give the dimer [(thf)Sn{mu-N(dipp)}2Sn(mu-Se)2Sn{mu-N(dipp)}2Sn(thf)] (9), a transformation that results in cleavage of the Sn4N4 cubane into four-membered Sn2N2 rings. The X-ray structures of 4, 5a, 5b, [Sn3Li(thf)(mu3-NtBu)4(mu3-Se)(mu2-Li)(thf)]2 (6a), [TeSn3Li(mu3-NtBu)4][Li(thf)4] (6b), [Te2Sn3Li(mu3-NtBu)4][Li([12]crown-4)2] (7b'') and 9 are presented. The fluxional behaviour of cubic imidotin chalcogenides and the correlation between NMR coupling constants and tin-chalcogen bond lengths are also discussed.

摘要

癸烷 [Sn3(μ2-NHtBu)2(μ2-NtBu)(μ3-NtBu)] (1) 与二丁基镁反应生成异双金属立方烷 [Sn3Mg(μ3-NtBu)4] (4),该化合物在四氢呋喃中与元素硫族元素反应形成通式为 [ESn3Mg(μ3-NtBu)4] (5a, E = Se; 5b, E = Te) 的单硫族化物配合物。相比之下,阴离子锂化立方烷 [Sn3Li(μ3-NtBu)4]- 与适量的硒或碲反应会导致三个 Sn(II) 中心逐个发生硫族化反应。然而,单硫族化物或二硫族化物的纯样品最好通过 [Sn3Li(μ3-NtBu)4]- 与三硫族化物 [E3Sn3Li(μ3-NtBu)4]- (E = Se, Te) 的化学计量再分配反应获得。这些反应通过 119Sn NMR 光谱方便地进行监测。阴离子 [Sn3Li(μ3-NtBu)4]- 在硒与中性立方烷 [{Snμ3-N(dipp)}4] (8) (dipp = 2,6-二异丙基苯基) 的反应中也作为一种有效的硫族转移试剂,生成二聚体 [(thf)Sn{μ-N(dipp)}2Sn(μ-Se)2Sn{μ-N(dipp)}2Sn(thf)] (9),这一转化导致 Sn4N4 立方烷裂解为四元 Sn2N2 环。给出了 4、5a、5b、[Sn3Li(thf)(μ3-NtBu)4(μ3-Se)(μ2-Li)(thf)]2 (6a)、[TeSn3Li(μ3-NtBu)4][Li(thf)4] (6b)、[Te2Sn3Li(μ3-NtBu)4][Li([12]冠醚-4)2] (7b'') 和 9 的 X 射线结构。还讨论了立方亚胺硫族化物的动态行为以及 NMR 耦合常数与锡-硫族键长之间的相关性。

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