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The Synthesis, Characterization and Reactivity of a Series of Ruthenium N-triphosPh Complexes
Published on: April 10, 2015
Phase Engineering of Amorphous Ru-O-C60 for Efficient Electrosynthesis of Sulfoxides
Junmin Li1, Shan He1, Xiao Han1
1Key Hefei National Laboratory For Physical Sciences At the Microscale, Department of Applied Chemistry, Center of Advanced Nanocatalysis (CAN), University of Science & Technology of China, Hefei, Anhui, P. R. China.
Abstract:
The diverse short/medium-range structures of amorphous nanomaterials dictate their phase structures, which ultimately govern their catalytic behaviors. However, the inherent high Gibbs free energy caused by disordered atomic arrangement makes the controlled phase regulation of amorphous nanomaterials challenging. Herein, we regulated the phase structure of amorphous RuOx nanosheets by constructing a novel amorphous Ru-O-C60 motif. Integrated differential phase contrast image confirms the incorporation and spatial distribution of C60 within the amorphous RuOx nanosheets. X-ray absorption fine structure measurements reveal that amorphous RuOx nanosheets anchored onto C60 (A-RuOx/C60 NSs) possess an edge-sharing RuO6 octahedral configuration. The A-RuOx/C60 NSs exhibit outstanding performance in the electro-oxidation of methyl phenyl sulfide, achieving 99.1% conversion, 99.63% selectivity, 99.57% Faradaic efficiency, and excellent stability over 50 cycles, while maintaining high conversion and selectivity toward various para- and meta-substituted methyl phenyl sulfide derivatives. Density functional theory calculations reveal that the edge-sharing RuO6 octahedral configuration enhances methyl phenyl sulfide adsorption, facilitate Ru─O bond cleavage and S═O bond formation, thereby accelerating product formation and release. Moreover, the synthesis strategy is extendable to the preparation of various monometallic and bimetallic amorphous oxides/C60 nanosheets.

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