Here we introduce a new type of porous liquid that combines two coordination cages in a single salt. This material is prepared through the ion metathesis of two oppositely-charged cages: one charged +20, and the other with a −16 charge. This ionic liquid has higher porosity than previously reported systems, because both of its components are hollow cages. The enhanced porosity holds promise for improving performance in chemical separations or storage, reflecting the guest-binding selectivity of the two cages, and the applications accessible due to its liquid nature.

Oppositely-charged coordination cages form a type I porous ionic liquid with two pore sizes / Adorinni, S., Ryan, H.P., Ma, L., Ronson, T.K., Gaikwad, S., Rossi, B., Nasi, L., Nitschke, J.R., Marchesan, S.. - In: MATERIALS HORIZONS. - ISSN 2051-6347. - 13:10(2026), pp. 5004-5009. [10.1039/d5mh02121a]

Oppositely-charged coordination cages form a type I porous ionic liquid with two pore sizes

Adorinni, Simone;Marchesan, Silvia
2026-01-01

Abstract

Here we introduce a new type of porous liquid that combines two coordination cages in a single salt. This material is prepared through the ion metathesis of two oppositely-charged cages: one charged +20, and the other with a −16 charge. This ionic liquid has higher porosity than previously reported systems, because both of its components are hollow cages. The enhanced porosity holds promise for improving performance in chemical separations or storage, reflecting the guest-binding selectivity of the two cages, and the applications accessible due to its liquid nature.
2026
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11368/3146938
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