The effect of anion fluorination in ionic liquids—physical properties of a range of bis(methanesulfonyl)amide salts

Влияние фторирования аниона в ионных жидкостях — физические свойства ряда солей бис(метансульфонил)амида
Douglas R. MacFarlane, Jennifer M. Pringle, Janet L. Scott, Jake Golding, Krisztian Baranyai, Craig M. Forsyth, Glen B. Deacon
2003-01-01

anion fluorinationbis(methanesulfonyl)amide (NMes2−)bis(trifluoromethanesulfonyl)amide (TFSA)crystal structure close contactsionic liquid physical properties
The bis(trifluoromethanesulfonyl)amide, TFSA, anion is widely used in the genesis of room temperature ionic liquids as it is non-spherical, fluorinated and has a particularly diffuse charge. However, the extent to which each of these structural features is responsible for the low melting point, fluidity and excellent stability of the resultant ionic liquids has yet to be described. We present the synthesis and analysis of a range of analogous, non-fluorinated species containing the bis(methanesulfonyl)amide, NMes2−, ligand. Utilisation of this anion produces ionic liquids that are hydrophilic and extremely low melting, but with decreased thermal and electrical stability and significantly increased viscosity. The crystal structures of the dimethyl pyrrolidinium bis(methanesulfonyl)amide and TFSA species are compared, and the number of close contacts within each is assessed. Comparison of these structural and physical properties provides new insight into the effect of anion fluorination on these ionic liquids.
1
Comparison of crystal structures and counts of close contacts between dimethyl pyrrolidinium NMes2− and TFSA species links anion fluorination to differing structural and physical properties.
2
Ionic liquids with the NMes2− anion are hydrophilic and extremely low melting compared to TFSA-based analogues.
3
NMes2−-based ionic liquids exhibit decreased electrical stability compared to TFSA-based ionic liquids.
4
NMes2−-based ionic liquids have significantly increased viscosity versus TFSA-containing ionic liquids.
5
NMes2−-based ionic liquids show decreased thermal stability relative to fluorinated TFSA counterparts.
6
Synthesis and analysis of non-fluorinated bis(methanesulfonyl)amide (NMes2−) ionic liquids was performed to probe effects of anion fluorination.

Ionic liquids containing bis(methanesulfonyl)amide (NMes2−) and bis(trifluoromethanesulfonyl)amide (TFSA) anions

Effect of anion fluorination on physical and structural properties (melting point, fluidity/viscosity, hydrophilicity, thermal and electrical stability, crystal structure and close contacts) of these ionic liquids

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2003-01-01
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Authors
Douglas R. MacFarlane
Jennifer M. Pringle
Janet L. Scott
Jake Golding
Krisztian Baranyai
Craig M. Forsyth
Glen B. Deacon
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