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Abstract
Video-rate atomic force microscopy (AFM) is used to record the near-surface nanostructure and dynamics of one pure ionic liquid (IL), 1-hexyl-3-methylimidazolium tris(pentafluoroethyl)trifluorophosphate (HMIM FAP), and a locally-concentrated IL comprising HMIM FAP with the low viscosity diluent 1,1,2,2-tetrafluoroethyl 2,2,2-trifluoroethyl ether (TFTFE), on highly oriented pyrolytic graphite (HOPG) and Au(111) electrodes as a function of potential. Over the potential range measured (open-circuit potential ± 1 V), different near-surface nanostructures are observed. For pure HMIM FAP, globular aggregates align in rows on HOPG, whereas elongated and worm-like nanostructures form on Au(111). For 2:1 (wt:wt) HMIM FAP:TFTFE, larger and less defined diluent swollen IL aggregates are present on both electrodes. Long-lived near-surface nanostructures for HMIM FAP and the 2:1 (wt:wt) HMIM FAP:TFTFE persist on both electrodes. 2:1 (wt:wt) HMIM FAP:TFTFE mixture diffuses more rapidly than pure HMIM FAP on both electrodes with obviously higher diffusion coefficients on HOPG than on Au(111) due to weaker electrostatic and solvophobic interactions between near-surface aggregates and Stern layer ions. These outcomes provide valuable insights for a wide range of IL applications in interface sciences, including electrolytes, catalysts, lubricants, and sensors.
Original language | English |
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Article number | 2403109 |
Number of pages | 9 |
Journal | Small |
Volume | 20 |
Issue number | 46 |
Early online date | 6 Aug 2024 |
DOIs | |
Publication status | Published - 14 Nov 2024 |
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Dive into the research topics of 'Nanostructure and Dynamics of the Locally Concentrated Ionic Liquid 2:1 (wt:wt) HMIM FAP:TFTFE and HMIM FAP on Graphite and Gold Electrodes as a Function of Potential'. Together they form a unique fingerprint.-
Nanoscale Dynamics and Structure of SAILs at Electrodes
Atkin, R. (Investigator 01), Silvester-Dean, D. (Investigator 02), Warr, G. (Investigator 03), Costa Gomes, M. (Investigator 04) & Padua, A. (Investigator 05)
ARC Australian Research Council
25/01/21 → 25/03/25
Project: Research
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Quantitative Movies of Nanoscale Dynamics by Video Atomic Force Microscopy
Atkin, R. (Chief Investigator), Swaminatha Iyer, K. (Chief Investigator), Ludwig, M. (Chief Investigator), Parish, G. (Chief Investigator), Smith, N. (Chief Investigator), Poinem, G. (Chief Investigator), Hartley, P. (Chief Investigator) & Parsons, D. (Chief Investigator)
ARC Australian Research Council
1/01/20 → 31/12/20
Project: Research
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Nanostructured Ionic-Molecular Hybrid Liquids
Warr, G. (Investigator 01), Atkin, R. (Investigator 02), Perkin, S. (Investigator 03) & Edlar, K. (Investigator 04)
ARC Australian Research Council
1/01/20 → 31/12/23
Project: Research