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Tuning reactivity of Fischer–Tropsch synthesis by regulating TiOx overlayer over Ru/TiO2 nanocatalysts

2020/06/24 by Yaru Zhang, Xiaoli Yang, Xiaofeng Yang +10 · 2 citations
Chemical Engineering · Energy · Materials Science · #Catalysts for Methane Reforming #Catalytic Processes in Materials Science #Electrocatalysts for Energy Conversion

paper · pdf · doi:10.1038/s41467-020-17044-4

openalex publication_date 2020/06/24 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/30

Abstract

Abstract The activity of Fischer–Tropsch synthesis (FTS) on metal-based nanocatalysts can be greatly promoted by the support of reducible oxides, while the role of support remains elusive. Herein, by varying the reduction condition to regulate the TiO x overlayer on Ru nanocatalysts, the reactivity of Ru/TiO 2 nanocatalysts can be differentially modulated. The activity in FTS shows a volcano-like trend with increasing reduction temperature from 200 to 600 °C. Such a variation of activity is characterized to be related to the activation of CO on the TiO x overlayer at Ru/TiO 2 interfaces. Further theoretical calculations suggest that the formation of reduced TiO x occurs facilely on the Ru surface, and it involves in the catalytic mechanism of FTS to facilitate the CO bond cleavage kinetically. This study provides a deep insight on the mechanism of TiO x overlayer in FTS, and offers an effective approach to tuning catalytic reactivity of metal nanocatalysts on reducible oxides.

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