Alumina-Supported CoFe Alloy Catalysts Derived from Layered-Double-Hydroxide Nanosheets for Efficient Photothermal CO<sub>2</sub> Hydrogenation to Hydrocarbons.

Chen, Guangbo; Gao, Rui; Zhao, Yufei; Li, Zhenhua; Waterhouse, Geoffrey I N; Shi, Run; Zhao, Jiaqing; Zhang, Mengtao et al. · Adv Mater · 2018

basic_science · Level V

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Abstract

A series of novel CoFe-based catalysts are successfully fabricated by hydrogen reduction of CoFeAl layered-double-hydroxide (LDH) nanosheets at 300-700 °C. The chemical composition and morphology of the reaction products (denoted herein as CoFe-x) are highly dependent on the reduction temperature (x). CO<sub>2</sub> hydrogenation experiments are conducted on the CoFe-x catalysts under UV-vis excitation. With increasing LDH-nanosheet reduction temperature, the CoFe-x catalysts show a progressive selectivity shift from CO to CH<sub>4</sub> , and eventually to high-value hydrocarbons (C<sub>2+</sub> ). CoFe-650 shows remarkable selectivity toward hydrocarbons (60% CH<sub>4</sub> , 35% C<sub>2+</sub> ). X-ray absorption fine structure, high-resolution transmission electron microscopy, Mössbauer spectroscopy, and density functional theory calculations demonstrate that alumina-supported CoFe-alloy nanoparticles are responsible for the high selectivity of CoFe-650 for C<sub>2+</sub> hydrocarbons, also allowing exploitation of photothermal effects. This study demonstrates a vibrant new catalyst platform for harnessing clean, abundant solar-energy to produce valuable chemicals and fuels from CO<sub>2</sub> .