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Novel H-Bonded Synthons in Copper Supramolecular Frameworks with Aminoethylpiperazine-Based Ligands. Synthesis Structure and Catalytic Activity

机译:铜超分子骨架中的新型H键合合成硅脲基哌嗪基配体。合成结构和催化活性

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摘要

New Schiff base complexes [Cu2(HL1)(L1)(N3)3]∙2H2O (1) and [Cu2L2(N3)2]∙H2O (2) were synthesized. The crystal structures of 1 and 2 were determined by single-crystal X-ray diffraction analysis. The HL1 ligand results from the condensation of salicylaldehyde and 1-(2-aminoethyl)piperazine, while a new organic ligand, H2L2, was formed by the dimerization of HL1 via a coupling of two piperazine rings of HL1 on a carbon atom coming from DMF solvent. The dinuclear building units in 1 and 2 are linked into complex supramolecular networks through hydrogen and coordination bondings, resulting in 2D and 1D architectures, respectively. Single-point and broken-symmetry DFT calculations disclosed negligible singlet–triplet splittings within the dinuclear copper fragments in 1 and 2. Catalytic studies showed a remarkable activity of 1 and 2 towards cyclohexane oxidation with H2O2 in the presence of nitric acid and pyridine as promoters and under mild conditions (yield of products up to 21%). Coordination compound 1 also acts as an active catalyst in the intermolecular coupling of cyclohexane with benzamide using di-tert-butyl peroxide (tBuOOtBu) as a terminal oxidant. Conversion of benzamide at 55% was observed after 24 h reaction time. By-product patterns and plausible reaction mechanisms are discussed.
机译:新的Schiff碱基配合物[Cu2(HL1)(L1)(N3)3]≥2H2O(1)和[Cu 2L 2(N 3)2]∙​​H2O(2)被合成。通过单晶X射线衍射分析确定1和2的晶体结构。 HL1配体来自水杨醛和1-(2-氨基乙基)哌嗪的缩合,而新的有机配体H2L2通过HL1的二聚化通过HL1的两种哌嗪环的二聚,来自来自DMF的碳原子溶剂。通过氢气和配位粘合,1和2中的二维构建单元与复杂的超分子网络连接,分别导致2D和1D架构。单点和破裂对称的DFT计算在1和2中公开了渗透铜片段内的可忽略不计的单次三态分裂。催化研究表明,在硝酸和吡啶的存在下,在硝酸和吡啶存在下,在硝酸和吡啶的存在下朝向环己烷氧化的显着活性在温和条件下(产量高达21%)。配位化合物1还用作使用二叔丁基过氧化物(TBUOOTBU)作为终氧化物的环己烷的分子间偶联的活性催化剂作为末端氧化剂。在24小时反应时间后观察到苯甲酰胺的转化为55%。讨论了副产物模式和可粘合的反应机制。

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