Explores transition metal oxides in the oxygen evolution reaction and the challenges in proving the active element, along with benchmarking electrocatalysts for oxygen evolution.
Delves into the role of computational chemistry in enhancing Olefin Metathesis, emphasizing theory's predictive power and the Nobel Prize-winning contributions of Chauvin, Grubbs, and Schrock.
Explores transition metal oxides as OER catalysts, focusing on active sites in Fe-free and Fe-doped Ni oxides, revealing insights into the OER mechanism.
Discusses electrophilic addition reactions and hydrogenation processes in alkenes, emphasizing mechanisms, conditions, and practical applications in organic synthesis.
Discusses metal carbonyls and their applications in catalysis and chemical reactions, including the introduction of metal carbines and their significance in synthetic chemistry.