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XPS and PM-IRRAS evidenced the growth of a solid electrolyte interphase (SEI) layer that is constituted of Li2CO3 formed by reductive decomposition of the electrolyte.
In this work, those gaseous by-products generated by reductive decomposition of a carbonate-based electrolyte, 1.2 M LiPF6 in EC/PC/DEC (3:1:4), were analyzed at different stages during the lithiation process of an amorphous carbon electrode.
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The mechanism of precipitation for substances produced by the reductive decomposition of a nonaqueous electrolyte solution (NES) at a graphite electrode (GE) was investigated with the help of classical thermodynamics in this paper.
The reductive decomposition of calcium sulphate by hydrogen is used for the regeneration of calcium-based atmospheric fluidized bed combustion (AFBC) SO2 sorbents.
When silylated graphite oxide was prepared at 90 °C, the reductive decomposition of graphite oxide by amino groups of 3-aminopropylmethyldiethoxysilane was suppressed and pillared carbon with higher crystallinity was obtained.
Based on the similarities in the exothermic behaviors of charged graphite and non-graphitizable carbon electrodes, the exothermic reactions at around 300 °C should be assigned to the reductive decomposition of a surface film by charged non-graphitizable carbon.
The SEI film can obviously inhibit the reductive decomposition of electrolyte, electrode erosion and LiF formation upon cycling.
Rates of CaS formation and of reductive decomposition of CaSO4 differ greatly for different limestones.
Using CH4 neither reductive decomposition of CaSO4 nor formation of CaS is observed.
Both CaS oxidation and reductive decomposition of CaSO4 may lead to a diminished degree of desulphurization in real combustors.
Reductive decomposition of the SnS2 host occurred in the dark besides intercalation of the hydrated K+ ion.
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