Effect of Water and Dimethyl Sulfoxide on Oxygen Reduction Reaction in Bis(trifluoromethanesulfonyl)imide-based Ionic Liquids
暂无分享,去创建一个
[1] Xunyu Lu,et al. Oxygen Reduction Reaction in Room Temperature Protic Ionic Liquids , 2013 .
[2] P. Licence,et al. Kinetics and mechanism of oxygen reduction in a protic ionic liquid. , 2013, Physical chemistry chemical physics : PCCP.
[3] Karl Sieradzki,et al. Oxygen Reduction Reaction in Ionic Liquids: The Addition of Protic Species , 2013 .
[4] P. Attri,et al. Effect of anion variation on the thermophysical properties of triethylammonium based protic ionic liquids with polar solvent , 2013 .
[5] P. Attri,et al. Influence of anion on thermophysical properties of ionic liquids with polar solvent , 2013 .
[6] F. Mjalli,et al. Investigating the electrochemical windows of ionic liquids , 2013 .
[7] Guangren Yu,et al. Viscosity of ionic liquids: Database, observation, and quantitative structure‐property relationship analysis , 2012 .
[8] S. Koda,et al. Shear Relaxation of Water–Ionic Liquid Mixtures , 2012 .
[9] S. Mukerjee,et al. Fundamental Mechanistic Understanding of Electrocatalysis of Oxygen Reduction on Pt and Non-Pt Surfaces: Acid versus Alkaline Media , 2012 .
[10] S. Al-zahrani,et al. Generation of superoxide ion in 1-butyl-1- methylpyrrolidinium trifluoroacetate and its application in the destruction of chloroethanes , 2012 .
[11] R. Marcilla,et al. Electrochemical reduction of O2 in 1-butyl-1-methylpyrrolidinium bis(trifluoromethanesulfonyl)imide ionic liquid containing Zn2+ cations: deposition of non-polar oriented ZnO nanocrystalline films. , 2011, Physical chemistry chemical physics : PCCP.
[12] F. Mjalli,et al. Electrochemical reduction of dioxygen in Bis (trifluoromethylsulfonyl) imide based ionic liquids , 2011 .
[13] Jiujun Zhang,et al. Electrocatalytic Activities of La0.6Ca0.4CoO3 and La0.6Ca0.4CoO3-Carbon Composites Toward the Oxygen Reduction Reaction in Concentrated Alkaline Electrolytes , 2011 .
[14] J. Świergiel,et al. On intermolecular dipolar coupling in two strongly polar liquids: dimethyl sulfoxide and acetonitrile. , 2011, The journal of physical chemistry. B.
[15] A. Pádua,et al. Polarity, viscosity, and ionic conductivity of liquid mixtures containing [C4C1im][Ntf2] and a molecular component. , 2011, The journal of physical chemistry. B.
[16] Lei Zhang,et al. Magneli phase Ti4O7 electrode for oxygen reduction reaction and its implication for zinc-air rechargeable batteries , 2010 .
[17] R. Ruoff,et al. Review of Best Practice Methods for Determining an Electrode Material's Performance for Ultracapacitors , 2010, 1005.0805.
[18] Michael Freemantle,et al. An Introduction to Ionic Liquids , 2010 .
[19] J. Conboy,et al. Kinetics and Thermodynamics of Hydrogen Oxidation and Oxygen Reduction in Hydrophobic Room-Temperature Ionic Liquids. , 2009, Journal of the Electrochemical Society.
[20] Xingjiu Huang,et al. The reduction of oxygen in various room temperature ionic liquids in the temperature range 293-318 K: exploring the applicability of the Stokes-Einstein relationship in room temperature ionic liquids. , 2009, The journal of physical chemistry. B.
[21] M. Fan,et al. Measurements and correlation of viscosities and conductivities for the mixtures of imidazolium ionic liquids with molecular solutes , 2009 .
[22] C. Lagrost,et al. Superoxide protonation by weak acids in imidazolium based ionic liquids. , 2009, The journal of physical chemistry. B.
[23] R. Compton,et al. Effect of Water on the Electrochemical Window and Potential Limits of Room-Temperature Ionic Liquids , 2008 .
[24] F. A. Amaral,et al. Evidence of change in the molecular organization of 1-n-butyl-3-methylimidazolium tetrafluoroborate ionic liquid solutions with the addition of water , 2008 .
[25] R. Compton,et al. Unusual Voltammetry of the Reduction of O2 in [C4dmim][N(Tf)2] Reveals a Strong Interaction of O2•− with the [C4dmim]+ Cation , 2008 .
[26] M. Turmine,et al. Viscosities and refractive indices of binary mixtures of 1-butyl-3-methylimidazolium tetrafluoroborate and 1-butyl-2,3-dimethylimidazolium tetrafluoroborate with water at 298K , 2008 .
[27] P. Ross,et al. Oxygen electroreduction on Ag(111) : The pH effect , 2007 .
[28] Mingfang Yu,et al. The Physical Properties of Aqueous Solutions of the Ionic Liquid [BMIM][BF4] , 2006 .
[29] Huizhi Chen,et al. Densities and Viscosities of 1-Butyl-3-methylimidazolium Tetrafluoroborate + H2O Binary Mixtures from (303.15 to 353.15) K , 2006 .
[30] P. Ross,et al. Oxygen reduction on silver low-index single-crystal surfaces in alkaline solution: rotating ring disk(Ag(hkl)) studies. , 2006, The journal of physical chemistry. B.
[31] C. Comminges,et al. Determination of Viscosity, Ionic Conductivity, and Diffusion Coefficients in Some Binary Systems: Ionic Liquids + Molecular Solvents , 2006 .
[32] Masaki Yamagata,et al. Electrochemical Behavior of Oxygen/Superoxide Ion Couple in 1-Butyl-1-methylpyrrolidinium Bis(trifluoromethylsulfonyl)imide Room-Temperature Molten Salt , 2005 .
[33] M. Nunes da Ponte,et al. A detailed thermodynamic analysis of [C4mim][BF4]+ water as a case study to model ionic liquid aqueous solutions , 2004 .
[34] R. G. Evans,et al. Non-haloaluminate room-temperature ionic liquids in electrochemistry--a review. , 2004, Chemphyschem : a European journal of chemical physics and physical chemistry.
[35] R. G. Evans,et al. Electroreduction of Oxygen in a Series of Room Temperature Ionic Liquids Composed of Group 15-Centered Cations and Anions , 2004 .
[36] T. Ohsaka,et al. Electroreduction of Dioxygen in 1-n-Alkyl-3-methylimidazolium Tetrafluoroborate Room-Temperature Ionic Liquids , 2004 .
[37] Masaki Yamagata,et al. Electrochemical reduction of oxygen in some hydrophobic room-temperature molten salt systems , 2004 .
[38] Yong Tian,et al. A volumetric and viscosity study for the mixtures of 1-n-butyl-3-methylimidazolium tetrafluoroborate ionic liquid with acetonitrile, dichloromethane, 2-butanone and N, N – dimethylformamide , 2003 .
[39] J. Wadhawan,et al. Voltammetry of oxygen in the room-temperature ionic liquids 1-ethyl-3-methylimidazolium bis((trifluoromethyl)sulfonyl)imide and hexyltriethylammonium bis((trifluoromethyl)sulfonyl)imide: One-electron reduction to form superoxide. Steady-state and transient behavior in the same cyclic voltammogram re , 2003 .
[40] T. Nishida,et al. Physical and electrochemical properties of 1-alkyl-3-methylimidazolium tetrafluoroborate for electrolyte , 2003 .
[41] C. Hahn,et al. The simultaneous voltammetric determination and detection of oxygen and carbon dioxide A study of the kinetics of the reaction between superoxide and carbon dioxide in non-aqueous media using membrane-free gold disc microelectrodes , 2003 .
[42] N. Marković,et al. Surface Composition Effects in Electrocatalysis: Kinetics of Oxygen Reduction on Well-Defined Pt3Ni and Pt3Co Alloy Surfaces , 2002 .
[43] I. Alnashef,et al. Superoxide Electrochemistry in an Ionic Liquid , 2002 .
[44] I. Alnashef,et al. Electrochemical Generation of Superoxide in Room-Temperature Ionic Liquids , 2001 .
[45] C. Hahn,et al. Microelectrode Studies of the Reaction of Superoxide with Carbon Dioxide in Dimethyl Sulfoxide , 2001 .
[46] K. Seddon,et al. Influence of chloride, water, and organic solvents on the physical properties of ionic liquids , 2000 .
[47] D. Macfarlane,et al. Pyrrolidinium Imides: A New Family of Molten Salts and Conductive Plastic Crystal Phases , 1999 .
[48] Hubert A. Gasteiger,et al. Oxygen reduction of platinum low-index single-crystal surfaces in alkaline solution: Rotating ring disk{sub Pt(hkl)} studies , 1996 .
[49] C. Hahn,et al. The development of new microelectrode gas sensors: an odyssey. Part 1. O2 and CO2 reduction at unshielded gold microdisc electrodes , 1995 .
[50] H. Wendt,et al. Electroreduction of oxygen in aprotic media , 1995 .
[51] H. Gasteiger,et al. Oxygen reduction on platinum low-index single-crystal surfaces in sulfuric acid solution. Rotating ring - Pt(hkl) disk studies , 1995 .
[52] Christopher A. Reed,et al. Synthetic Heme Dioxygen Complexes , 1994 .
[53] C. Hussey,et al. Electrochemical reduction of dioxygen in room-temperature imidazolium chloride-aluminum chloride molten salts , 1991 .
[54] D. T. Sawyer,et al. Electrochemical reduction of dioxygen to perhydroxyl (HO2.) in aprotic solvents that contain Brønsted acids. , 1986, Analytical chemistry.
[55] D. T. Sawyer,et al. Effects of media and electrode materials on the electrochemical reduction of dioxygen , 1982 .
[56] D. T. Sawyer,et al. Redox chemistry of dioxygen species , 1979 .
[57] V. Gutmann,et al. The acceptor number — A quantitative empirical parameter for the electrophilic properties of solvents , 1975 .