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Ionic-liquid materials for the electrochemical challenges of the future

离子液体 电化学 离子键合 材料科学 纳米技术 化学工程 离子 化学 工程类 有机化学 电极 物理化学 催化作用
作者
Michel Armand,Frank Endres,Douglas R. MacFarlane,Hiroyuki Ohno,Bruno Scrosati
出处
期刊:Co-Published with Macmillan Publishers Ltd, UK eBooks [Co-Published with Macmillan Publishers Ltd, UK]
卷期号:: 129-137 被引量:134
标识
DOI:10.1142/9789814317665_0020
摘要

Materials for Sustainable Energy, pp. 129-137 (2010) No AccessIonic-liquid materials for the electrochemical challenges of the futureMichel Armand, Frank Endres, Douglas R. MacFarlane, Hiroyuki Ohno, and Bruno ScrosatiMichel ArmandLRCS CNRS 6007, Université de Picardie Jules Verne, F-80039 Amiens, France, Frank EndresInstitute of Particle Technology, Clausthal University of Technology, D-38678 Clausthal-Zellerfeld, Germany, Douglas R. MacFarlaneSchool of Chemistry and ARC Centre of Excellence for Electromaterials Science, Monash University, Clayton, Victoria 3800, Australia, Hiroyuki OhnoDepartment of Biotechnology, Tokyo University of Agriculture and Technology, Tokyo 184-8588, Japan, and Bruno ScrosatiDepartment of Chemistry, University Sapienza, 00185 Rome, Italyhttps://doi.org/10.1142/9789814317665_0020Cited by:24 PreviousNext AboutSectionsPDF/EPUB ToolsAdd to favoritesDownload CitationsTrack CitationsRecommend to Library ShareShare onFacebookTwitterLinked InRedditEmail Abstract: Ionic liquids are room-temperature molten salts, composed mostly of organic ions that may undergo almost unlimited structural variations. This review covers the newest aspects of ionic liquids in applications where their ion conductivity is exploited; as electrochemical solvents for metal/semiconductor electrodeposition, and as batteries and fuel cells where conventional media, organic solvents (in batteries) or water (in polymer-electrolyte-membrane fuel cells), fail. Biology and biomimetic processes in ionic liquids are also discussed. In these decidedly different materials, some enzymes show activity that is not exhibited in more traditional systems, creating huge potential for bioinspired catalysis and biofuel cells. Our goal in this review is to survey the recent key developments and issues within ionic-liquid research in these areas. As well as informing materials scientists, we hope to generate interest in the wider community and encourage others to make use of ionic liquids in tackling scientific challenges. FiguresReferencesRelatedDetailsCited By 24Influence of lithium metal anode coated with a composite quasi-solid electrolyte on stabilizing the interface of all-solid-state batteryRamakumar Sampathkumar, M. G. Karthick Babu, Evan Kurian, R. N. Ramesha and Dasari Bosubabu et al.18 March 2022 | Ionics, Vol. 28, No. 6Tailoring physicochemical properties of collagen-based composites with ionic liquids and wool for advanced applicationsMireia Andonegi, Daniela M. Correia, Carlos M. Costa, Senentxu Lanceros-Mendez and Koro de la Caba et al.1 Jun 2022 | Polymer, Vol. 252The Role of Energy Scales for the Structure of Ionic Liquids at Electrified Interfaces: A Theory-Based ApproachMax Schammer, Arnulf Latz and Birger Horstmann1 April 2022 | The Journal of Physical Chemistry B, Vol. 126, No. 14"Porous and Yet Dense" Electrodes for High‐Volumetric‐Performance Electrochemical Capacitors: Principles, Advances, and ChallengesZhenghui Pan, Jie Yang, Junhua Kong, Xian Jun Loh and John Wang et al.18 November 2021 | Advanced Science, Vol. 9, No. 4Materials and technologies for multifunctional, flexible or integrated supercapacitors and batteriesWenbin Fu, Kostiantyn Turcheniuk, Olga Naumov, Roman Mysyk and Fujia Wang et al.1 Sep 2021 | Materials Today, Vol. 48Pyridazinium based ionic liquids as green corrosion inhibitors: An overviewShriniwas Gurjar, Sushil Kumar Sharma, Ankit Sharma and Sonia Ratnani10 August 2021 | Electrochemical Science Advances, Vol. 2016Nanoconfinement between Graphene Walls Suppresses the Near-Wall Diffusion of the Ionic Liquid [BMIM][PF 6 ]Cheng Shao, Wee-Liat Ong, Junichiro Shiomi and Alan J. H. McGaughey22 April 2021 | The Journal of Physical Chemistry B, Vol. 125, No. 17Experimental Measurement of Physical, Transport, and Optical Properties of Binary Mixtures of N-Hexyl Pyridinium Nitrate [HPy][NO3] Ionic Liquid with Water, Ethanol, and Acetonitrile at 298.15 K and 101 kPaM. Doust Mohammadi, M. Hamzehloo and Hewa Y. Abdullah1 April 2021 | Journal of Solution Chemistry, Vol. 50, No. 4Strategies of modifying spiro-OMeTAD materials for perovskite solar cells: a reviewGuanhua Ren, Wenbin Han, Yanyu Deng, Wei Wu and Zhuowei Li et al.1 January 2021 | Journal of Materials Chemistry A, Vol. 9, No. 8A perspective on ionic liquid-based membranes for CO2 separationRizwan Nasir, Dzeti Farhah Mohshim, Hafiz Abdul Mannan, Danial Qadir and Hilmi Mukhtar et al.10 October 2020 | Chemical Papers, Vol. 75, No. 3Carbon Nanomaterials Embedded in Conductive Polymers: A State of the ArtI. Jénnifer Gómez, Manuel Vázquez Sulleiro, Daniele Mantione and Nuria Alegret27 February 2021 | Polymers, Vol. 13, No. 5Synthesis and mesomorphism of related series of triphilic ionic liquid crystals based on 1,2,4-triazolium cationsAlessio Riccobono, Giuseppe Lazzara, Sarah E. Rogers, Ivana Pibiri and Andrea Pace et al.1 Jan 2021 | Journal of Molecular Liquids, Vol. 321On the molecular mechanisms of α and β relaxations in ionic liquidsElisa Steinrücken, Manuel Becher and Michael Vogel14 Sep 2020 | The Journal of Chemical Physics, Vol. 153, No. 10Atomic Force and Scanning Tunneling Microscopy of Ordered Ionic Liquid Wetting Layers from 110 K up to Room TemperatureManuel Meusel, Matthias Lexow, Afra Gezmis, Simon Schötz and Margareta Wagner et al.1 July 2020 | ACS Nano, Vol. 14, No. 7Optimization of the Carbon Content in Copper Phosphide–Carbon Composites for High Performance Sodium Secondary Batteries Using Ionic LiquidsShubham Kaushik, Kazuhiko Matsumoto, Yuta Sato and Rika Hagiwara10 June 2020 | ChemElectroChem, Vol. 7, No. 11Confining Liquids inside Carbon Nanotubes: Accelerated Molecular Dynamics with Spliced, Soft-Core Potentials and Simulated AnnealingAusten Bernardi, Eric R. Meshot and Roland Faller10 March 2020 | Journal of Chemical Theory and Computation, Vol. 16, No. 4The Electrodeposition of Amorphous/Nanocrystalline Ni–Cr Alloys from ChCl–EG Deep Eutectic SolventXiangyu Ren, Xiaolin Zhu, Cunying Xu, Yixin Hua and Qibo Zhang et al.18 March 2020 | Journal of The Electrochemical Society, Vol. 167, No. 6Preparation of hemoglobin (Hb)-imprinted poly(ionic liquid)s via Hb-catalyzed eATRP on gold nanodendritesYue Sun, Xuewei Feng, Jing Hu, Shuang Bo and Jiameng Zhang et al.17 December 2019 | Analytical and Bioanalytical Chemistry, Vol. 412, No. 4Capacitor to SupercapacitorSoma Banerjee, Prerna Sinha, Kapil Dev Verma, Tanvi Pal and Bibekananda De et al.17 April 2020On the relation between reorientation and diffusion in glass-forming ionic liquids with micro-heterogeneous structuresManuel Becher, Elisa Steinrücken and Michael Vogel21 Nov 2019 | The Journal of Chemical Physics, Vol. 151, No. 19Photopolymerization of Ionic Liquids – A Mutually Beneficial Approach for Materials FabricationRyan Guterman and Christene A. Smith7 December 2018 | Israel Journal of Chemistry, Vol. 59, No. 9Probing Conformational Heterogeneity at the Ionic Liquid–Vacuum Interface by Reactive-Atom ScatteringEric J. Smoll, Simon M. Purcell, Lucia D'Andrea, John M. Slattery and Duncan W. Bruce et al.11 December 2018 | The Journal of Physical Chemistry Letters, Vol. 10, No. 2NiO-nanofillers embedded in graphite/PVA-polymer matrix for efficient electromagnetic radiation shieldingTariq Al Zoubi, Borhan Albiss, M.-Ali AL-Akhras, Hamzeh Qutaish and Enad Alabed et al.1 Jan 2019III-V semicondutor nanostructures and iontronics: InAs nanowire-based electric double layer field effect transistorsDomenic Prete, Johanna Lieb, Valeria Demontis, Luca Bellucci and Valentina Tozzini et al.1 Jan 2019 Materials for Sustainable EnergyMetrics History PDF download
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