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Updated: Jan 16, 2026

From Molecules to Materials: Engineering New Ionic Liquid Crystals Through Halogen Bonding
Published on: March 24, 2018
Influence of ionic liquid composition on surface enrichment of fluorine-free Ru complexes
Alisson Ceccatto1, Luciano Sanchez Merlinsky2,3, Luis M Baraldo2,3
1Lehrstuhl für Physikalische Chemie 2, Friedrich-Alexander-Universität Erlangen-Nürnberg Egerlandstr. 3 91058 Erlangen Germany hans-peter.steinrueck@fau.de alisson.ac.ceccatto@fau.de.
Abstract:
Tailoring the surface composition of ionic liquids (ILs) is a key strategy for enhancing the performance of supported ionic liquid phase (SILP) catalysts. Here, we investigate the interfacial behavior of fluorine-free Ru polypyridyl complexes functionalized with n-nonyl side chains (Ru-C9) dissolved in two ILs with contrasting physicochemical properties, such as hydrophobicity and surface tension, namely [C4C1Im][PF6] and [C4C1Im][OAc]. Using angle-resolved X-ray photoelectron spectroscopy (ARXPS), we show that Ru-C9 complexes undergo pronounced surface enrichment in [C4C1Im][PF6], adopting a buoy-like orientation at the IL/vacuum interface. Surface saturation is achieved at a bulk concentration of 0.12%mol, a regime relevant for efficient SILP catalysis. In contrast, no interfacial enrichment is observed in [C4C1Im][OAc], highlighting the critical role of IL composition, particularly anion identity and surface tension, in governing the surface distribution of metal complexes. These findings provide molecular-level insights into the design of IL-based catalytic systems with optimized interfacial properties.
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