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首页> 外文期刊>Inorganica Chimica Acta >Palladium(II) as a versatile template for the formation of tetraaza macrocycles via Mannich-type reactions
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Palladium(II) as a versatile template for the formation of tetraaza macrocycles via Mannich-type reactions

机译:钯(II)作为通过曼尼希型反应形成四氮杂大环的通用模板

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摘要

The versatility of palladium(II) as a template for Mannich-type macrocyclization is illustrated. Reaction of (bis(3-aminopropyl)piperazine)palladium(II) with formaldehyde and nitroethane in basic aqueous solution yields the 'reinforced' macrocycle 7-methyl-7-nitro-1,5,9,13-tetraazabicyclo[11.2.2]heptadecane as its palladium(II) complex. The crystal structure shows the palladium ion lies in a slightly tetrahedrally distorted square plane of four nitrogen donors, with distances to the two tertiary donors [av. 2.059(3) angstrom] slightly shorter than those to the secondary amines [av. 2.066(3) angstrom]. The 3-methyl-3-nitro-1,5,9,13-tetraazacyclohexadecane as its palladium(II) complex was prepared by an analogous route. In a separate reaction based on the [Pd(en)(chxn)](2+) (en = ethane-1,2-diamine; chxn = cyclohexane-1,2-diamine) intermediate, an unsymmetrical macrocycle with a fused cyclohexane ring, 4,11-dimethyl-4,11-dinitro-2,6,9,13-tetraazabicyclo[12.4.0]octadecane was isolated as its palladium(II) complex. Accessibility to an isolable mixed-ligand precursor is a key to this reaction, provided by using palladium(II) as the templating metal. Reaction of (4,8-diazaundecane-1,11-diamine)palladium(II) with formaldehyde and diethyl malonate in basic aqueous solution yields, with ester hydrolysis and decarboxylation, the carboxylate-pendant macrocycle 1,5,9,13-tetraazacyclohexadecane-3-carboxylic acid as its palladium(II) complex. The crystal structure is comprised of hydrogen-bonded dimers {[Pd(L)][Pd(L-H)]}(3+) where the pair of inversion related square-planar complexes share a single proton between their pendant carboxylates. Bis(3-aminopropyl)(piperazine)palladium(II) yields the macrocyclic complex ion (1,5,9,13-tetraazabicyclo[11..2.2]heptadecane-7-carboxylic acid)palladium(II), in a similar reaction. (c) 2005 Elsevier B.V. All rights reserved.
机译:举例说明了钯(II)作为曼尼希型大环化反应的模板的多功能性。 (双(3-氨基丙基)哌嗪)钯(II)与甲醛和硝基乙烷在碱性水溶液中反应,生成“增强”大环7-甲基-7-硝基-1,5,9,13-四氮杂双环[11.2.2] ]十七烷作为其钯(II)配合物。晶体结构显示钯离子位于四个氮供体的略呈四面体形扭曲的方平面中,与两个叔供体之间的距离[av。 2.059(3)埃]略短于仲胺[av。 2.066(3)埃]。通过类似的方法制备3-甲基-3-硝基-1,5,9,13-四氮杂环十六烷作为其钯(II)配合物。在基于[Pd(en)(chxn)](2+)(en =乙烷-1,2-二胺; chxn =环己烷-1,2-二胺)中间体的单独反应中,具有稠合环己烷的不对称大环分离出4,11-二甲基-4,11-二硝基-2,6,9,13-四氮杂双环[12.4.0]十八烷作为钯(II)配合物。通过使用钯(II)作为模板金属,可分离的混合配体前体的可及性是该反应的关键。在碱性水溶液中,(4,8-二氮杂十一烷-1,11-二胺)钯(II)与甲醛和丙二酸二乙酯反应,通过酯水解和脱羧反应,使羧酸酯侧链大环1,5,9,13-四氮杂环十六烷-3-羧酸作为其钯(II)络合物。晶体结构由氢键二聚体{[Pd(L)] [Pd(L-H)]}(3+)组成,其中一对与反转有关的方形平面络合物在其侧链羧酸盐之间共享一个质子。在类似的反应中,双(3-氨基丙基)(哌嗪)钯(II)产生大环络离子(1,5,9,13-四氮杂双环[11..2.2]十七烷-7-羧酸)钯(II) 。 (c)2005 Elsevier B.V.保留所有权利。

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