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Alvarez-Tirado et al. Energy Mater 2023;3:300003  https://dx.doi.org/10.20517/energymater.2022.59  Page 13 of 14

                   perspectives. Chem Soc Rev 2020;49:5407-45.  DOI  PubMed
               4.       Chen J, Li D, Lin K, Ke X, Cheng Y, Shi Z. Building a stable artificial solid electrolyte interphase on lithium metal anodes toward
                   long-life Li-O  batteries. J Power Sources 2022;540:231603.  DOI
                            2
               5.       Wang D, Mu X, He P, Zhou H. Materials for advanced Li-O  batteries: explorations, challenges and prospects. Mater Today
                                                             2
                   2019;26:87-99.  DOI
               6.       Zhou D, Shanmukaraj D, Tkacheva A, Armand M, Wang G. Polymer electrolytes for lithium-based batteries: advances and prospects.
                   Chem 2019;5:2326-52.  DOI
               7.       Wang Q, Wang H, Wu J, Zhou M, Liu W, Zhou H. Advanced electrolyte design for stable lithium metal anode: from liquid to solid.
                   Nano Energy 2021;80:105516.  DOI
               8.       Liu K, Wang Z, Shi L, Jungsuttiwong S, Yuan S. Ionic liquids for high performance lithium metal batteries. J Energy Chem
                   2021;59:320-33.  DOI
               9.       Stettner T, Balducci A. Protic ionic liquids in energy storage devices: past, present and future perspective. Energy Stor Mater
                   2021;40:402-14.  DOI
               10.      Long L, Wang S, Xiao M, Meng Y. Polymer electrolytes for lithium polymer batteries. J Mater Chem A 2016;4:10038-69.  DOI
               11.      Knipping E, Aucher C, Guirado G, Aubouy L. Room temperature ionic liquids versus organic solvents as lithium-oxygen battery
                   electrolytes. New J Chem 2018;42:4693-9.  DOI
               12.      Yang Q, Zhang Z, Sun XG, Hu YS, Xing H, Dai S. Ionic liquids and derived materials for lithium and sodium batteries. Chem Soc Rev
                   2018;47:2020-64.  DOI  PubMed
               13.      Nakamoto H, Suzuki Y, Shiotsuki T, et al. Ether-functionalized ionic liquid electrolytes for lithium-air batteries. J Power Sources
                   2013;243:19-23.  DOI
               14.      Osada I, de Vries H, Scrosati B, Passerini S. Ionic-liquid-based polymer electrolytes for battery applications. Angew Chem Int Ed
                   2016;55:500-13.  DOI  PubMed
               15.      Ulissi U, Elia GA, Jeong S, et al. Low-polarization lithium-oxygen battery using [DEME][TFSI] ionic liquid electrolyte.
                   ChemSusChem 2018;11:229-36.  DOI  PubMed
               16.      Alvarez-tirado M, Castro L, Guéguen A, Mecerreyes D. Iongel soft solid electrolytes based on [DEME][TFSI] Ionic liquid for low
                   polarization lithium-O  batteries. Batteries Supercaps 2022;5:e202200049.  DOI
                                 2
               17.      Vanhoutte G, Hojniak SD, Bardé F, Binnemans K, Fransaer J. Fluorine-functionalized ionic liquids with high oxygen solubility. RSC
                   Adv 2018;8:4525-30.  DOI  PubMed  PMC
               18.      Li D, Zhang Q, Shen Z, et al. 3D hexapod-shaped Co-ZIFs-S derived co nanoparticles embedded into nitrogen and sulfur co-doped
                   carbon decorated with ruthenium nanoparticles as efficient catalyst for rechargeable lithium oxygen battery. Nano Energy
                   2022;91:106644.  DOI
               19.      Liu Y, Cai J, Zhou J, et al. Tailoring the adsorption behavior of superoxide intermediates on nickel carbide enables high-rate Li-O
                                                                                                         2
                   batteries. eScience 2022;2:389-98.  DOI
               20.      Kwak  WJ,  Rosy,  Sharon  D,  et  al.  Lithium-oxygen  batteries  and  related  systems:  potential,  status,  and  future.  Chem  Rev
                   2020;120:6626-83.  DOI  PubMed
               21.      Tomé LC, Porcarelli L, Bara JE, Forsyth M, Mecerreyes D. Emerging iongel materials towards applications in energy and
                   bioelectronics. Mater Horiz 2021;8:3239-65.  DOI  PubMed
               22.      Zhao M, Wu B, Lall-ramnarine SI, et al. Structural analysis of ionic liquids with symmetric and asymmetric fluorinated anions. J
                   Chem Phys 2019;151:074504.  DOI  PubMed
               23.      Zhao H, Liu X, Chi Z, et al. Designing a new-type PMMA based gel polymer electrolyte incorporating ionic liquid for lithium oxygen
                   batteries with Ru-based Binder-free cathode. Appl Surf Sci 2021;565:150612.  DOI
               24.      Jung KN, Lee JI, Jung JH, Shin KH, Lee JW. A quasi-solid-state rechargeable lithium-oxygen battery based on a gel polymer
                   electrolyte with an ionic liquid. Chem Commun 2014;50:5458-61.  DOI  PubMed
               25.      Pan J, Li H, Sun H, et al. A lithium-air battery stably working at high temperature with high rate performance. Small 2018;14:1703454.
                   DOI  PubMed
               26.      Amanchukwu CV, Chang H, Gauthier M, Feng S, Batcho TP, Hammond PT. One-electron mechanism in a gel-polymer electrolyte Li-
                   O  battery. Chem Mater 2016;28:7167-77.  DOI
                    2
               27.      Gouveia ASL, Tomé LC, Lozinskaya EI, Shaplov AS, Vygodskii YS, Marrucho IM. Exploring the effect of fluorinated anions on the
                   CO /N  separation of supported ionic liquid membranes. Phys Chem Chem Phys 2017;19:28876-84.  DOI
                     2
                       2
               28.      Costa AJ, Soromenho MR, Shimizu K, et al. Density, thermal expansion and viscosity of cholinium-derived ionic liquids.
                   Chemphyschem 2012;13:1902-9.  DOI  PubMed
               29.      Rajkumar T, Ranga Rao G. Synthesis and characterization of hybrid molecular material prepared by ionic liquid and silicotungstic
                   acid. Mater Chem Phys 2008;112:853-7.  DOI
               30.      Paschoal VH, Faria LFO, Ribeiro MCC. Vibrational spectroscopy of ionic liquids. Chem Rev 2017;117:7053-112.  DOI  PubMed
               31.      Gao X, Wu F, Mariani A, Passerini S. Concentrated ionic-liquid-based electrolytes for high-voltage lithium batteries with improved
                   performance at room temperature. ChemSusChem 2019;12:4185-93.  DOI  PubMed  PMC
               32.      Pal P, Ghosh A. Solid-state gel polymer electrolytes based on ionic liquids containing imidazolium cations and tetrafluoroborate
                   anions for electrochemical double layer capacitors: Influence of cations size and viscosity of ionic liquids. J Power Sources
                   2018;406:128-40.  DOI
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