Synthesis and Structural Studies of Group 12 Oxazoline-Enolate Coordination Complexes of (Z)-1-R-2-(4’,4’-Dimethyl-2’-oxazolin-2’-yl)-eth-1-en-1-ates; Part I: the Zinc Derivatives

IF 1.1 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Matthew C. Hill, A. Lough, Robert A. Gossage
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引用次数: 0

Abstract

The synthesis and characterisation (IR, NMR, HR-MS, X-ray crystallography) of six oxazoline Zn complexes, containing enolate ligands derived from a series of (Z)-1-R-2-(4’,4’-dimethyl-2’-oxazolin-2’-yl)-eth-1-en-1-ols (R = C6H5, C6H4-p-NO2, C6H4-p-OCH3, CF3, CH3 or CMe3), is detailed. All derivatives are air-stable solids of formula Zn(Ln)2 and are formed in the presence of the title ligands and NEt3. Reasonable yields (53-82%) are obtained with the exception of R = CMe3 (9%); in this case by-product formation and high solubility affected complex isolation. Crystallographic characterisation reveals that in all cases the ligands are bound in a κ2-N, O bonding motif. Little structural diversity is noted within the series; these complexes are further placed into structural context with related Zn materials containing oxazoline, phenolate and / or Schiff base ligands.
(Z)-1- r -2-(4′,4′-二甲基-2′-恶唑啉-2′-基)-eth-1-烯酸酯配位配合物的合成及结构研究第一部分:锌衍生物
详细介绍了六种恶唑啉锌配合物的合成和表征(IR, NMR, HR-MS, x射线晶体学),这些配合物含有一系列(Z)-1-R-2-(4 ',4 ' -二甲基-2 ' -恶唑啉-2 ' -yl)-eth-1-en-1-ol (R = C6H5, C6H4-p-NO2, C6H4-p-OCH3, CF3, CH3或CMe3)。所有衍生物都是式Zn(Ln)2的空气稳定固体,并在标题配体和NEt3存在下形成。除R = CMe3(9%)外,收率在53-82%之间;在这种情况下,副产物的形成和高溶解度影响了络合物的分离。晶体学表征表明,在所有情况下,配体结合在一个κ2-N, O键基序。在该系列中很少注意到结构多样性;这些配合物进一步与含有恶唑啉、酚酸盐和/或希夫碱配体的相关锌材料置于结构环境中。
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来源期刊
Canadian Journal of Chemistry
Canadian Journal of Chemistry 化学-化学综合
CiteScore
1.90
自引率
9.10%
发文量
99
审稿时长
1 months
期刊介绍: Published since 1929, the Canadian Journal of Chemistry reports current research findings in all branches of chemistry. It includes the traditional areas of analytical, inorganic, organic, and physical-theoretical chemistry and newer interdisciplinary areas such as materials science, spectroscopy, chemical physics, and biological, medicinal and environmental chemistry. Articles describing original research are welcomed.
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