Citation:
Ken Motokura, Masaki Naijo, Sho Yamaguchi, Akimitsu Miyaji, Toshihide Baba. Reductive transformation of CO2: Fluoride-catalyzed reactions with waste silicon-based reducing agents[J]. Chinese Journal of Catalysis,
;2017, 38(3): 434-439.
doi:
10.1016/S1872-2067(17)62800-6
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CO2 is one of the most important “renewable” carbon sources. To transform CO2 to useful organic compounds, we examined the reactivity of two model silicon-based “waste” materials, disilanes and metallic Si powder, as reducing agents. In these reactions, fluoride salts were found to be active catalysts: CO2 was converted to formic acid at atmospheric pressure in the presence of H2O as a proton source and the silicon-based reducing reagents. Based on in-situ NMR and kinetics analyses, a hydrosilane and penta-coordinate Si species are proposed as the reaction intermediate and active species, respectively.
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Keywords:
- Carbon dioxide,
- Fluoride,
- Homogeneous catalysis,
- Formic acid,
- Disilane
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[4]
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[5]
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[6]
-
[7]
-
[8]
-
[9]
-
[10]
-
[11]
-
[12]
-
[13]
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[14]
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[15]
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[16]
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