Litcius/Paper detail

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

Yaru Zhang, Xiaoli Yang, Xiaofeng Yang, Hongmin Duan, Haifeng Qi, Yang Su, Binglian Liang, Hua Bing Tao, Bin Liu, De Chen, Xiong Su, Yanqiang Huang, Tao Zhang, Yanqiang Huang, Tao Zhang

2020Nature Communications237 citationsDOIOpen Access PDF

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.

Topics & Concepts

Nanomaterial-based catalystOverlayerFischer–Tropsch processReactivity (psychology)CatalysisMetalChemistryChemical engineeringMaterials scienceNanotechnologyPhysical chemistryOrganic chemistrySelectivityEngineeringMedicinePathologyAlternative medicineCatalysts for Methane ReformingElectrocatalysts for Energy ConversionCatalytic Processes in Materials Science