Abstract:Liquid salts comprising molten salts and ionic liquids offer important media to address both energy and materials challenges. Here we review topics presented in this Faraday Discussion volume related to improved electrowinning of metals, optimisation of processes, new electrochemical device concepts, chemistry in ionic liquids, conversion of biomass, carbon chemistry and nuclear applications. The underlying phenomenology is then reviewed and commentary given. Some future applications are then discussed, furthe… Show more
“…For example, species such as superoxides and dissolved metals, which are usually nonexistent in a solid-state PTO synthesis, can be found in the MSS. 13 The overarching chemical basis of molten salt chemistry and synthesis is understood through the Lux-Flood acid base theory: 14 Base → acid + O 2− …”
For the successful molten salt synthesis of La0.8Sr0.2MnO3, the salt cation is more influential than the anion. With a KNO3 solvent, pure phase LSM nanoparticles are synthesized at 600 °C in 1 hour.
“…For example, species such as superoxides and dissolved metals, which are usually nonexistent in a solid-state PTO synthesis, can be found in the MSS. 13 The overarching chemical basis of molten salt chemistry and synthesis is understood through the Lux-Flood acid base theory: 14 Base → acid + O 2− …”
For the successful molten salt synthesis of La0.8Sr0.2MnO3, the salt cation is more influential than the anion. With a KNO3 solvent, pure phase LSM nanoparticles are synthesized at 600 °C in 1 hour.
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