Outer-Sphere Control of Catalysis on Surfaces: A Comparative Study of Ti(IV) Single-Sites Grafted on Amorphous versus Crystalline Silicates for Alkene Epoxidation.

The effect of outer-sphere environment on alkene epoxidation catalysis using an organic hydroperoxide oxidant is demonstrated for calix[4]arene-Ti single-sites grafted on amorphous vs crystalline delaminated zeotype (UCB-4) silicates as supports. A chelating calix[4]arene macrocyclic ligand helps en...

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Detalles Bibliográficos
Publicado en:Journal of the American Chemical Society Vol. 140; no. 15; pp. 4956 - 4961
Autores principales: Grosso-Giordano, Nicolás A., Schroeder, Christian, Okrut, Alexander, Solovyov, Andrew, Schhöttle, Christian, Chassé, Walter, Marinkovic, Nebojša, Koller, Hubert, Zones, Stacey I., Katz, Alexander
Formato: Artículo
Publicado: American Chemical Society 4/18/2018
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Acceso en línea:Ver este registro en EBSCOhost
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Sumario:The effect of outer-sphere environment on alkene epoxidation catalysis using an organic hydroperoxide oxidant is demonstrated for calix[4]arene-Ti single-sites grafted on amorphous vs crystalline delaminated zeotype (UCB-4) silicates as supports. A chelating calix[4]arene macrocyclic ligand helps enforce a constant Ti inner-sphere, as characterized by UV-visible and X-ray absorption spectroscopies, thus enabling the rigorous comparison of outer-sphere environments across different siliceous supports. These outer-sphere environments are characterized by solid-state ¹H NMR spectroscopy to comprise proximally organized silanols confined within 12 membered-ring cups in crystalline UCB-4, and are responsible for up to 5-fold enhancements in rates of epoxidation by Ti centers.