We present here the possibility of forming triphilic mixtures from alkyl- and fluoroalkylimidazolium ionic liquids, thus, macroscopically homogeneous mixtures for which instead of the often observed two domainspolar and nonpolarthree stable microphases are present: polar, lipophilic, and fluorous ones. The fluorinated side chains of the cations indeed self-associate and form domains that are segregated from those of the polar and alkyl domains. To enable miscibility, despite the generally preferred macroscopic separation between fluorous and alkyl moieties, the importance of strong hydrogen bonding is shown. As the long-range structure in the alkyl and fluoroalkyl domains is dependent on the composition of the liquid, we propose that the heterogeneous, triphilic structure can be easily tuned by the molar ratio of the components. We believe that further development may allow the design of switchable, smart liquids that change their properties in a predictable way according to their composition or even their environment.

Triphilic ionic-liquid mixtures: fluorinated and non-fluorinated aprotic ionic-liquid mixtures / Holloczki, O; Macchiagodena, M; Weber, H; Thomas, M; Brehm, M; Stark, A; Russina, Olga; Triolo, A; Kirchner, B.. - In: CHEMPHYSCHEM. - ISSN 1439-7641. - ELETTRONICO. - 16:(2015), pp. 3325-3333. [10.1002/cphc.201500473]

Triphilic ionic-liquid mixtures: fluorinated and non-fluorinated aprotic ionic-liquid mixtures

RUSSINA, OLGA;
2015

Abstract

We present here the possibility of forming triphilic mixtures from alkyl- and fluoroalkylimidazolium ionic liquids, thus, macroscopically homogeneous mixtures for which instead of the often observed two domainspolar and nonpolarthree stable microphases are present: polar, lipophilic, and fluorous ones. The fluorinated side chains of the cations indeed self-associate and form domains that are segregated from those of the polar and alkyl domains. To enable miscibility, despite the generally preferred macroscopic separation between fluorous and alkyl moieties, the importance of strong hydrogen bonding is shown. As the long-range structure in the alkyl and fluoroalkyl domains is dependent on the composition of the liquid, we propose that the heterogeneous, triphilic structure can be easily tuned by the molar ratio of the components. We believe that further development may allow the design of switchable, smart liquids that change their properties in a predictable way according to their composition or even their environment.
2015
ionic liquids; microphases; molecular dynamics; nanosegregation fluorination; simulations microheterogen
01 Pubblicazione su rivista::01a Articolo in rivista
Triphilic ionic-liquid mixtures: fluorinated and non-fluorinated aprotic ionic-liquid mixtures / Holloczki, O; Macchiagodena, M; Weber, H; Thomas, M; Brehm, M; Stark, A; Russina, Olga; Triolo, A; Kirchner, B.. - In: CHEMPHYSCHEM. - ISSN 1439-7641. - ELETTRONICO. - 16:(2015), pp. 3325-3333. [10.1002/cphc.201500473]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/946306
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