Anna Y. Zueva, Prof. Dr. Alexey N. Bilyachenko, Ivan S. Arteev, Prof. Dr. Victor N. Khrustalev, Pavel V. Dorovatovskii, Lidia S. Shul'pina, Dr. Nikolay S. Ikonnikov, Dr. Evgenii I. Gutsul, Dr. Karim G. Rahimov, Prof. Dr. Elena S. Shubina, Nuno Reis Conceição, Dr. Kamran T. Mahmudov, Prof. Dr. M. Fátima C. Guedes da Silva, Prof. Dr. Armando J. L. Pombeiro
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引用次数: 0
摘要
通过双(苯基硅烷基二氧六环和醋酸盐)连接,方便地自组装合成铜(II)配合物,从而分离出一系列令人印象深刻的三明治状笼状复合物。这些复合物的一个引人入胜的特点是,尽管一对硅倍半氧烷配体的核性(Cu6)和醋酸盐片段的数量(四个)完全相同,但其结构却各不相同。研究发现,硅倍半氧烷配体特定组合(环状/环状 vs 缩合/缩合 vs 环状/缩合)的形成取决于合成/结晶介质。Si4 环状和 Si6 缩合硅倍半氧烷配体的组合是笼状金属硅倍半氧烷的一个全新特征。具有代表性的 Cu6 复合物(4)(含环状硅倍半氧烷)在烷烃和醇与过氧化物的氧化反应中表现出很高的催化活性。环己烷氧化产物的最高产率达到 30%。在间氯过氧苯甲酸对环己酮的拜尔-维里格氧化反应中,化合物 4 也作为催化剂进行了测试:在 50 °C 下常规加热 4 小时和在 70 或 80 °C 下进行 30 分钟的 MW 照射后,ε-己内酯的最高产率分别达到了 88% 和 100%。使用相同的氧化剂,通过串联氧化/拜耳-维利格氧化反应,还可以直接从环己烷中获得内酯(收率高达 16%)。
A Family of Hexacopper Phenylsilsesquioxane/Acetate Complexes: Synthesis, Solvent-Controlled Cage Structures, and Catalytic Activity
Convenient self-assembly synthesis of copper(II) complexes via double (phenylsilsesquioxane and acetate) ligation allows to isolate a family of impressive sandwich-like cage compounds. An intriguing feature of these complexes is the difference in the structure of a pair of silsesquioxane ligands despite identical (Cu6) nuclearity and number (four) of acetate fragments. Formation of particular combination of silsesquioxane ligands (cyclic/cyclic vs condensed/condensed vs cyclic/condensed) was found to be dependent on the synthesis/crystallization media. A combination of Si4-cyclic and Si6-condensed silsesquioxane ligands is a brand new feature of cage metallasilsesquioxanes. A representative Cu6-complex (4) (with cyclic silsesquioxanes) exhibited high catalytic activity in the oxidation of alkanes and alcohols with peroxides. Maximum yield of the products of cyclohexane oxidation attained 30 %. The compound 4 was also tested as catalyst in the Baeyer-Villiger oxidation of cyclohexanone by m-chloroperoxybenzoic acid: maximum yields of 88 % and 100 % of ϵ-caprolactone were achieved upon conventional heating at 50 °C for 4 h and MW irradiation at 70 or 80 °C during 30 min, respectively. It was also possible to obtain the lactone (up to 16 % yield) directly from the cyclohexane via a tandem oxidation/Baeyer-Villiger oxidation reaction using the same oxidant.
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