Electroassisted Propane Dehydrogenation at Low Temperatures: Far beyond the Equilibrium Limitation

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Abstract

Propylene production by propane dehydrogenation (PDH) generally requires high temperatures due to thermodynamic equilibrium limitations. This study developed a novel type of catalytic system for low-temperature PDH by combining a surface protonics methodology with intermetallic active sites. By application of an electric current, the intermetallic Pt-In/TiO2catalyst gave a propylene yield of 10.2% with high selectivity, even at 250 °C, where the thermodynamic equilibrium yield was only 0.15%. Electroassisted proton collisions with propane allowed an unusual reaction pathway for low-temperature PDH. Alloying of Pt with In drastically enhanced the activity and selectivity due to the increased electron density of Pt. 2021 The Authors. Published by American Chemical Society.

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Zhang, J., Ma, R., Ham, H., Shimizu, K. I., & Furukawa, S. (2021). Electroassisted Propane Dehydrogenation at Low Temperatures: Far beyond the Equilibrium Limitation. JACS Au, 1(10), 1688–1693. https://doi.org/10.1021/jacsau.1c00287

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