The first example of a fluorescent highly stable pure binary ionic liquid (IL)-in-water emulsion is here described. The system is inexpensive, easy to synthesize and can be used as a selective fluorescent probe for metal ions. In particular, the system is able to recognize Fe3+ ions in pure water by a fluorescence "turn-off" mechanism.

Bettoschi, A., Bencini, A., Berti, D., Caltagirone, C., Conti, L., Demurtas, D., et al. (2015). Highly stable ionic liquid-in-water emulsions as a new class of fluorescent sensors for metal ions: The case study of Fe3+ sensing. RSC ADVANCES, 5, 37385-37391 [10.1039/c5ra05055c].

Highly stable ionic liquid-in-water emulsions as a new class of fluorescent sensors for metal ions: The case study of Fe3+ sensing

CONTI, LUCA;
2015

Abstract

The first example of a fluorescent highly stable pure binary ionic liquid (IL)-in-water emulsion is here described. The system is inexpensive, easy to synthesize and can be used as a selective fluorescent probe for metal ions. In particular, the system is able to recognize Fe3+ ions in pure water by a fluorescence "turn-off" mechanism.
2015
Bettoschi, A., Bencini, A., Berti, D., Caltagirone, C., Conti, L., Demurtas, D., et al. (2015). Highly stable ionic liquid-in-water emulsions as a new class of fluorescent sensors for metal ions: The case study of Fe3+ sensing. RSC ADVANCES, 5, 37385-37391 [10.1039/c5ra05055c].
Bettoschi, Alexandre; Bencini, Andrea; Berti, Debora; Caltagirone, Claudia; Conti, Luca; Demurtas, Davide; Giorgi, Claudia; Isaia, Francesco; Lippolis...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1051155
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