open access publication

Article, 2024

Anion Architecture Controls Structure and Electroresponsivity of Anhalogenous Ionic Liquids in a Sustainable Fluid

Journal of Physical Chemistry B, ISSN 1520-6106, 1089-5647, Volume 128, 17, Pages 4231-4242, 10.1021/acs.jpcb.3c08189

Contributors

Li S. 0000-0001-7195-1792 [1] Hammond O.S. 0000-0002-5612-9343 [2] [3] Nelson A. 0000-0002-4548-3558 [4] De Campo L. 0000-0003-4799-2935 [4] Moir M. [4] Recsei C. 0000-0001-8169-5921 [4] Shimpi M.R. 0000-0001-7469-4197 [3] [5] Glavatskih S. 0000-0002-8738-0047 [1] [6] [7] Pilkington G.A. 0000-0002-9815-8329 (Corresponding author) [1] Mudring A.-V. 0000-0002-2800-1684 (Corresponding author) [2] [3] [8] Rutland M.W. 0000-0002-8935-8070 (Corresponding author) [1] [7] [9] [10]

Affiliations

  1. [1] Royal Institute of Technology
  2. [NORA names: Sweden; Europe, EU; Nordic; OECD];
  3. [2] Aarhus University
  4. [NORA names: AU Aarhus University; University; Denmark; Europe, EU; Nordic; OECD];
  5. [3] Stockholm University
  6. [NORA names: Sweden; Europe, EU; Nordic; OECD];
  7. [4] Australian Nuclear Science and Technology Organisation
  8. [NORA names: Australia; Oceania; OECD];
  9. [5] Luleå University of Technology
  10. [NORA names: Sweden; Europe, EU; Nordic; OECD];

Abstract

Three nonhalogenated ionic liquids (ILs) dissolved in 2-ethylhexyl laurate (2-EHL), a biodegradable oil, are investigated in terms of their bulk and electro-interfacial nanoscale structures using small-angle neutron scattering (SANS) and neutron reflectivity (NR). The ILs share the same trihexyl(tetradecyl)phosphonium ([P]) cation paired with different anions, bis(mandelato)borate ([BMB]), bis(oxalato)borate ([BOB]), and bis(salicylato)borate ([BScB]). SANS shows a high aspect ratio tubular self-assembly structure characterized by an IL core of alternating cations and anions with a 2-EHL-rich shell or corona in the bulk, the geometry of which depends upon the anion structure and concentration. NR also reveals a solvent-rich interfacial corona layer. Their electro-responsive behavior, pertaining to the structuring and composition of the interfacial layers, is also influenced by the anion identity. [P][BOB] exhibits distinct electroresponsiveness to applied potentials, suggesting an ion exchange behavior from cation-dominated to anion-rich. Conversely, [P][BMB] and [P][BScB] demonstrate minimal electroresponses across all studied potentials, related to their different dissociative and diffusive behavior. A mixed system is dominated by the least soluble IL but exhibits an increase in disorder. This work reveals the subtlety of anion architecture in tuning bulk and electro-interfacial properties, offering valuable molecular insights for deploying nonhalogenated ILs as additives in biodegradable lubricants and supercapacitors.

Funders

  • Knut och Alice Wallenbergs Stiftelse
  • Australian Government
  • Stiftelsen för Strategisk Forskning
  • Vetenskapsrådet
  • Styrelsen for Forskning og Innovation
  • VINNOVA
  • Villum Fonden

Data Provider: Elsevier