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Chemical Communications (Cambridge, England)|November 27, 2025
High-nuclearity Cu14 ionic complex featuring 1,3-bis(diphenylphosphino)propane and methylsilsesquioxane ligands: highly efficient catalysis of mild peroxidative alkane fuctionalizationsIvan S Arteev, Victor N Khrustalev, Lidia S Shul'pina, et al.Molecules (Basel, Switzerland)|February 11, 2023
Cagelike Octacopper Methylsilsesquioxanes: Self-Assembly in the Focus of Alkaline Metal Ion Influence-Synthesis, Structure, and Catalytic ActivityAlexey N Bilyachenko, Ivan S Arteev, Victor N Khrustalev, et al.Inorganic Chemistry|April 15, 2026
Cu6- and Cu8-Based Acetylacetonate/Phenylsilsesquioxane Cages: Synthesis, Structure, and Activity in Oxidative CatalysisGrigorii S Astakhov, Zhibin Huang, Victor N Khrustalev, et al.Inorganic Chemistry|October 15, 2024
Cu12-Methylsilsesquioxane Cage Decorated with Cu(dppe)2 Moieties for Mild Oxidative Functionalization of AlkanesAlexey N Bilyachenko, Victor N Khrustalev, Ivan S Arteev, et al.Inorganic Chemistry|August 10, 2023
Cage-like Cu5Cs4-Phenylsilsesquioxanes: Synthesis, Supramolecular Structures, and Catalytic ActivityAlexey N Bilyachenko, Ivan S Arteev, Victor N Khrustalev, et al.Chemistry (Weinheim an Der Bergstrasse, Germany)|March 29, 2024
A Family of Hexacopper Phenylsilsesquioxane/Acetate Complexes: Synthesis, Solvent-Controlled Cage Structures, and Catalytic ActivityAnna Y Zueva, Alexey N Bilyachenko, Ivan S Arteev, et al.Pageof 1