A Family of Hexacopper Phenylsilsesquioxane/Acetate Complexes: Synthesis, Solvent‐Controlled Cage Structures, and Catalytic Activity

Author:

Zueva Anna Y.12,Bilyachenko Alexey N.12ORCID,Arteev Ivan S.23,Khrustalev Victor N.24,Dorovatovskii Pavel V.5,Shul'pina Lidia S.1,Ikonnikov Nikolay S.1,Gutsul Evgenii I.1,Rahimov Karim G.6,Shubina Elena S.1,Reis Conceição Nuno7,Mahmudov Kamran T.67,Guedes da Silva M. Fátima C.7,Pombeiro Armando J. L.7

Affiliation:

1. A.N. Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences 28 Vavilov Street 119334 Moscow Russian Federation

2. Research Institute of Chemistry Peoples' Friendship University of Russia (RUDN University) 6 Miklukho-Maklaya Street Moscow 117198 Russian Federation

3. Higher Chemical College Mendeleev University of Chemical Technology of Russia Miusskaya Sq. 9 125047 Moscow Russia

4. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences 47 Leninsky Prospect 119991 Moscow Russian Federation

5. National Research Center “Kurchatov Institute” 1 Akademika Kurchatova Pl. 123182 Moscow Russian Federation

6. Baku State University Z. Xalilov Str. 23 Az 1148 Baku Azerbaijan

7. Centro de Química Estrutural, Institute of Molecular Sciences, Instituto Superior Técnico Universidade de Lisboa Av. Rovisco Pais 1049-001 Lisboa Portugal

Abstract

AbstractConvenient 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.

Funder

Russian Science Foundation

Publisher

Wiley

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