Black indium oxide a photothermal CO2 hydrogenation catalyst

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作者
Lu Wang
Yuchan Dong
Tingjiang Yan
Zhixin Hu
Feysal M. Ali
Débora Motta Meira
Paul N. Duchesne
Joel Yi Yang Loh
Chenyue Qiu
Emily E. Storey
Yangfan Xu
Wei Sun
Mireille Ghoussoub
Nazir P. Kherani
Amr S. Helmy
Geoffrey A. Ozin
机构
[1] The Chinese University of Hong Kong,School of Science and Engineering
[2] Shenzhen,Solar Fuels Group, Department of Chemistry
[3] University of Toronto,College of Chemistry and Chemical Engineering
[4] Qufu Normal University,Center for Joint Quantum Studies and Department of Physics, Institute of Science
[5] Tianjin University,CLS@APS, Advanced Photon Source
[6] Argonne National Laboratory,Department of Electrical and Computer Engineering
[7] Canadian Light Source Inc.,Department of Materials Science and Engineering
[8] University of Toronto,State Key Laboratory of Silicon Materials and School of Materials Science and Engineering
[9] University of Toronto,undefined
[10] Zhejiang University,undefined
来源
Nature Communications | / 11卷
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摘要
Nanostructured forms of stoichiometric In2O3 are proving to be efficacious catalysts for the gas-phase hydrogenation of CO2. These conversions can be facilitated using either heat or light; however, until now, the limited optical absorption intensity evidenced by the pale-yellow color of In2O3 has prevented the use of both together. To take advantage of the heat and light content of solar energy, it would be advantageous to make indium oxide black. Herein, we present a synthetic route to tune the color of In2O3 to pitch black by controlling its degree of non-stoichiometry. Black indium oxide comprises amorphous non-stoichiometric domains of In2O3-x on a core of crystalline stoichiometric In2O3, and has 100% selectivity towards the hydrogenation of CO2 to CO with a turnover frequency of 2.44 s−1.
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