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Facile Synthesis of Platinum-Cerium(IV) Oxide Hybrids Arched on Reduced Graphene Oxide Catalyst in Reverse Micelles with High Activity and Durability for Hydrolysis of Ammonia Borane. | LitMetric

Facile Synthesis of Platinum-Cerium(IV) Oxide Hybrids Arched on Reduced Graphene Oxide Catalyst in Reverse Micelles with High Activity and Durability for Hydrolysis of Ammonia Borane.

Chem Asian J

Jiangxi Inorganic Membrane Materials Engineering Research Centre, College of Chemistry and Chemical Engineering, Jiangxi Normal University, Nanchang, 330022, China.

Published: November 2016

Highly dispersed Pt-CeO hybrids arched on reduced graphene oxide (Pt-CeO /rGO) were facilely synthesized by a combination of the reverse micelle technique and a redox reaction without any additional reductant or surfactant. Under a N atmosphere, the redox reaction between Ce and Pt occurs automatically in alkaline solution, which results in the formation of Pt-CeO /rGO nanocomposites (NCs). The as-synthesized Pt-CeO /rGO NCs exhibit superior catalytic performance relative to that shown by the free Pt nanoparticles, Pt/rGO, Pt-CeO hybrid, and the physical mixture of Pt-CeO and rGO; furthermore, the nanocomposites show significantly better activity than the commercial Pt/C catalyst toward the hydrolysis of ammonia borane (NH BH ) at room temperature. Moreover, the Pt-CeO /rGO NCs have remarkable stability, and 92 % of their initial catalytic activity is preserved even after 10 runs. The excellent activity of the Pt-CeO /rGO NCs can be attributed not only to the synergistic structure but also to the electronic effects of the Pt-CeO /rGO NCs among Pt, CeO , and rGO.

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Source
http://dx.doi.org/10.1002/asia.201601147DOI Listing

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