Aluminium(III) amidinates formed from reactions of `AlCl' with lithium amidinates.

IF 0.8 4区 化学 Acta crystallographica. Section C, Crystal structure communications Pub Date : 2013-10-01 Epub Date: 2013-09-06 DOI:10.1107/S0108270113023135
Dennis H Mayo, Yang Peng, Peter Zavalij, Kit H Bowen, Bryan W Eichhorn
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引用次数: 2

Abstract

The disproportionation of AlCl(THF)n (THF is tetrahydrofuran) in the presence of lithium amidinate species gives aluminium(III) amidinate complexes with partial or full chloride substitution. Three aluminium amidinate complexes formed during the reaction between aluminium monochloride and lithium amidinates are presented. The homoleptic complex tris(N,N'-diisopropylbenzimidamido)aluminium(III), [Al(C13H19N2)3] or Al{PhC[N(i-Pr)]2}3, (I), crystallizes from the same solution as the heteroleptic complex chloridobis(N,N'-diisopropylbenzimidamido)aluminium(III), [Al(C13H19N2)2Cl] or Al{PhC[N(i-Pr)]2}2Cl, (II). Both have two crystallographically independent molecules per asymmetric unit (Z' = 2) and (I) shows disorder in four of its N(i-Pr) groups. Changing the ligand substituent to the bulkier cyclohexyl allows the isolation of the partial THF solvate chloridobis(N,N'-dicyclohexylbenzimidamido)aluminium(III) tetrahydrofuran 0.675-solvate, [Al(C19H27N2)2Cl]·0.675C4H8O or Al[PhC(NCy)2]2Cl·0.675THF, (III). Despite having a twofold rotation axis running through its Al and Cl atoms, (III) has a similar molecular structure to that of (II).

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由AlCl与偕胺酸锂反应生成偕胺酸铝(III)。
AlCl(THF)n (THF为四氢呋喃)在偕胺酸锂存在下歧化反应得到偕胺酸铝(III)配合物,部分或全部氯取代。介绍了在一氯化铝与氨基酸锂反应过程中形成的三种氨基酸铝配合物。同色络合物三(N,N′-二异丙基苯并咪唑)铝(III), [Al(C13H19N2)3]或Al{PhC[N(I - pr)]2}3, (I),与异色络合物氯(N,N′-二异丙基苯并咪唑)铝(III), [Al(C13H19N2)2Cl]或Al{PhC[N(I - pr)]2}2Cl, (II)在相同的溶液中结晶。两者都有两个晶体独立的分子每不对称单元(Z′= 2)和(I)显示其四个N(I - pr)基团的无序性。将配体取代基改为体积较大的环己基,可以分离出部分四氢呋喃溶剂化物(N,N'-双环己基苯并咪胺)铝(III)四氢呋喃0.675溶剂化物[Al(C19H27N2)2Cl]·0.675c4h80或Al[PhC(NCy)2]2Cl·0.675THF, (III)。尽管Al和Cl原子具有双旋转轴,但(III)具有与(II)相似的分子结构。
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期刊介绍: Acta Crystallographica Section C: Structural Chemistry is continuing its transition to a journal that publishes exciting science with structural content, in particular, important results relating to the chemical sciences. Section C is the journal of choice for the rapid publication of articles that highlight interesting research facilitated by the determination, calculation or analysis of structures of any type, other than macromolecular structures. Articles that emphasize the science and the outcomes that were enabled by the study are particularly welcomed. Authors are encouraged to include mainstream science in their papers, thereby producing manuscripts that are substantial scientific well-rounded contributions that appeal to a broad community of readers and increase the profile of the authors.
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