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s- 区咔唑 -9- 基配合物中的配位调控

Tuning coordination in s-block carbazol-9-yl complexes.

作者信息

Ortu Fabrizio, Moxey Graeme J, Blake Alexander J, Lewis William, Kays Deborah L

机构信息

School of Chemistry, University of Nottingham, University Park, Nottingham, NG7 2RD (UK), Fax: (+44) 115-9513555; School of Chemistry, University of Manchester, Manchester M13 9PL (UK).

出版信息

Chemistry. 2015 Apr 27;21(18):6949-56. doi: 10.1002/chem.201406490. Epub 2015 Mar 17.

Abstract

1,3,6,8-Tetra-tert-butylcarbazol-9-yl and 1,8-diaryl-3,6-di(tert-butyl)carbazol-9-yl ligands have been utilized in the synthesis of potassium and magnesium complexes. The potassium complexes (1,3,6,8-tBu4carb)K(THF)4 (1; carb = C12H4N), [(1,8-Xyl2-3,6-tBu2carb)K(THF)]2 (2; Xyl = 3,5-Me2C6H3) and (1,8-Mes2-3,6-tBu2carb)K(THF)2 (3; Mes = 2,4,6-Me3C6H2) were reacted with MgI2 to give the Hauser bases 1,3,6,8-tBu4carbMgI(THF)2 (4) and 1,8-Ar2-3,6-tBu2carbMgI(THF) (Ar = Xyl 5, Ar = Mes 6). Structural investigations of the potassium and magnesium derivatives highlight significant differences in the coordination motifs, which depend on the nature of the 1- and 8-substituents: 1,8-di(tert-butyl)-substituted ligands gave π-type compounds (1 and 4), in which the carbazolyl ligand acts as a multi-hapto donor, with the metal cations positioned below the coordination plane in a half-sandwich conformation, whereas the use of 1,8-diaryl substituted ligands gave σ-type complexes (2 and 6). Space-filling diagrams and percent buried volume calculations indicated that aryl-substituted carbazolyl ligands offer a steric cleft better suited to stabilization of low-coordinate magnesium complexes.

摘要

1,3,6,8-四叔丁基咔唑-9-基和1,8-二芳基-3,6-二(叔丁基)咔唑-9-基配体已被用于合成钾和镁配合物。钾配合物(1,3,6,8-tBu4carb)K(THF)4 (1;carb = C12H4N)、[(1,8-Xyl2-3,6-tBu2carb)K(THF)]2 (2;Xyl = 3,5-Me2C6H3) 和(1,8-Mes2-3,6-tBu2carb)K(THF)2 (3;Mes = 2,4,6-Me3C6H2) 与MgI2反应,得到豪泽碱1,3,6,8-tBu4carbMgI(THF)2 (4) 和1,8-Ar2-3,6-tBu2carbMgI(THF) (Ar = Xyl 5, Ar = Mes 6)。钾和镁衍生物的结构研究突出了配位模式的显著差异,这取决于1-和8-取代基的性质:1,8-二(叔丁基)取代的配体给出π型化合物(1和4),其中咔唑基配体作为多齿供体,金属阳离子以半夹心构象位于配位平面下方,而使用1,8-二芳基取代的配体得到σ型配合物(2和6)。空间填充图和埋藏体积百分比计算表明,芳基取代的咔唑基配体提供了一个更适合稳定低配位镁配合物的空间裂隙。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d54/4641456/b4d37dfab673/chem0021-6949-f1.jpg

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