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Ruthenium-cobalt single atom alloy for CO photo-hydrogenation to liquid fuels at ambient pressures.


ABSTRACT: Photothermal Fischer-Tropsch synthesis represents a promising strategy for converting carbon monoxide into value-added chemicals. High pressures (2-5 MPa) are typically required for efficient C-C coupling reactions and the production of C5+ liquid fuels. Herein, we report a ruthenium-cobalt single atom alloy (Ru1Co-SAA) catalyst derived from a layered-double-hydroxide nanosheet precursor. Under UV-Vis irradiation (1.80 W cm-2), Ru1Co-SAA heats to 200 °C and photo-hydrogenates CO to C5+ liquid fuels at ambient pressures (0.1-0.5 MPa). Single atom Ru sites dramatically enhance the dissociative adsorption of CO, whilst promoting C-C coupling reactions and suppressing over-hydrogenation of CHx* intermediates, resulting in a CO photo-hydrogenation turnover frequency of 0.114 s-1 with 75.8% C5+ selectivity. Owing to the local Ru-Co coordination, highly unsaturated intermediates are generated during C-C coupling reactions, thereby improving the probability of carbon chain growth into C5+ liquid fuels. The findings open new vistas towards C5+ liquid fuels under sunlight at mild pressures.

SUBMITTER: Zhao J 

PROVIDER: S-EPMC10076290 | biostudies-literature | 2023 Apr

REPOSITORIES: biostudies-literature

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Ruthenium-cobalt single atom alloy for CO photo-hydrogenation to liquid fuels at ambient pressures.

Zhao Jiaqi J   Liu Jinjia J   Li Zhenhua Z   Wang Kaiwen K   Shi Run R   Wang Pu P   Wang Qing Q   Waterhouse Geoffrey I N GIN   Wen Xiaodong X   Zhang Tierui T  

Nature communications 20230405 1


Photothermal Fischer-Tropsch synthesis represents a promising strategy for converting carbon monoxide into value-added chemicals. High pressures (2-5 MPa) are typically required for efficient C-C coupling reactions and the production of C<sub>5+</sub> liquid fuels. Herein, we report a ruthenium-cobalt single atom alloy (Ru<sub>1</sub>Co-SAA) catalyst derived from a layered-double-hydroxide nanosheet precursor. Under UV-Vis irradiation (1.80 W cm<sup>-2</sup>), Ru<sub>1</sub>Co-SAA heats to 200 °  ...[more]

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