Battery electrolytes based on saturated ring ionic liquids: Physical and electrochemical properties was written by Di Leo, Roberta A.;Marschilok, Amy C.;Takeuchi, Kenneth J.;Takeuchi, Esther S.. And the article was included in Electrochimica Acta in 2013.Application of 608140-12-1 This article mentions the following:
Phys. and electrochem. properties of mixtures of ionic liquids based on saturated ring systems with carbonate based solvents were studied. The conductivity and electrochem. stability of two series of ionic liquids based on piperidinium and pyrrolidinium cations with tetrafluoroborate and bis(trifluorosulfonylimide) anions were evaluated. The effects of the ionic liquid cation, substituent chain length of the cation function group, and the anion type on conductivity and electrochem. stability as determined by cyclic voltammetry were studied. The conductivity was influenced by the substituent chain length of the ionic liquid cation and the solvent carbonate type, where higher conductivities were observed with shorter substituent chains and EC vs. PC. The saturated ring ionic liquid-carbonate mixtures may show particular promise for implementation as battery electrolytes due to notable high voltage stabilities, where stability >5.5 V was maintained in the presence of Li salt. This study should promote development of future safe, high voltage Li ion battery systems. In the experiment, the researchers used many compounds, for example, 1-Methyl-1-propylpiperidin-1-ium bis((trifluoromethyl)sulfonyl)amide (cas: 608140-12-1Application of 608140-12-1).
1-Methyl-1-propylpiperidin-1-ium bis((trifluoromethyl)sulfonyl)amide (cas: 608140-12-1) belongs to piperidine derivatives. The piperidine moiety constitutes an important building block for the synthesis of a variety of bioactive natural products, alkaloids and other drugs. Piperidine derivatives bearing a masked aldehyde function in the ε-position are easily transformed into quinolizidine compounds through intramolecular reductive amination.Application of 608140-12-1
Referemce:
Piperidine – Wikipedia,
Piperidine | C5H11N – PubChem