Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 84 checked references that resolve
resolves10.1021/cr980032tRoom-Temperature Ionic Liquids. Solvents for Synthesis and Catalysis
resolves10.1038/nmat2448Ionic-liquid materials for the electrochemical challenges of the future
resolves10.1039/C5EE02284CIonic liquids as tailored media for the synthesis and processing of energy conversion materials
resolves10.1039/b101079oIon conduction in zwitterionic-type molten salts and their polymers
resolves10.1071/CH03240Design of Ionic Liquids for Electrochemical Applications
resolves10.1295/polymj.PJ2008153Thermally Stable and Proton Conductive Ionogel Based on Brønsted Acidic Ionic Liquid with the Support of Silicate Network
resolves10.1038/nmat1044The zwitterion effect in high-conductivity polyelectrolyte materials
resolves10.1002/adma.200500595The Zwitterion Effect in Ionic Liquids: Towards Practical Rechargeable Lithium‐Metal Batteries
resolves10.1002/anie.200353632Zwitterionic Silver Complexes as Carriers for Facilitated‐Transport Composite Membranes
resolves10.1021/jp1062176Interionic Interactions of Binary Gels Consisting of Pyrrolidinium-Based Zwitterionic Compounds and Lithium Salts
resolves10.1021/jp0275894Ionic Liquids: Ion Mobilities, Glass Temperatures, and Fragilities
resolves10.1039/b515287aStructural factors to improve physico-chemical properties of zwitterions as ion conductive matrices
resolves10.1039/B517019BLithium ion conduction in an organoborate zwitterion–LiTFSI mixture
resolves10.1016/j.ssi.2015.11.017Li+ ion transport in ionic liquid-based electrolytes and the influence of sulfonate-based zwitterion additives
resolves10.1016/j.electacta.2010.09.068Effect of zwitterionic salt on the electrochemical properties of a solid polymer electrolyte with high temperature stability for lithium ion batteries
resolves10.1016/j.ssi.2006.12.022Improved ionic conductivity of nitrile rubber/Li(CF3SO2)2N composites by adding imidazolium-type zwitterion
resolves10.1246/cl.2008.86Thermally Stable Polymer Gel Electrolytes Composed of Branched Polyimide and Ionic Liquid/Zwitterion Mixture Prepared by In Situ Polycondensation
resolves10.1016/j.electacta.2015.11.018Improvement of charge/discharge properties of oligoether electrolytes by zwitterions with an attached cyano group for use in lithium-ion secondary batteries
resolves10.1016/j.jpowsour.2016.09.058Effect of a pyrrolidinium zwitterion on charge/discharge cycle properties of Li/LiCoO2 and graphite/Li cells containing an ionic liquid electrolyte
resolves10.1021/ja026290wNovel Brønsted Acidic Ionic Liquids and Their Use as Dual Solvent−Catalysts
resolves10.1021/jo034859lApplication of Functional Ionic Liquids Possessing Two Adjacent Acid Sites for Acetalization of Aldehydes
resolves10.1039/b404241gThe first utilization of acidic ionic liquid for preparation of tetraarylporphyrins
resolves10.1246/cl.2004.472Novel Acidic Ionic Liquids Catalytic Systems for Friedel–Crafts Alkylation of Aromatic Compounds with Alkenes
resolves10.1039/b404137bAnhydrous proton transport system based on zwitterionic liquid and HTFSI
resolves10.1021/jp1078949Proton Transport Properties in Zwitterion Blends with Brønsted Acids
resolves10.1002/cplu.201200247Synthesis and Properties of Room‐Temperature Choline Carboxylate Zwitterionic Ionic Liquids as Potential Electrolytes
resolves10.1039/p29930000545Dielectric increments, intercharge distances and conformation of quaternary ammonioalkylsulfonates and alkoxydicyanoethenolates in aqueous and tirfluoroethanol solutions
resolves10.1246/cl.2004.1594A New Family of Zwitterionic Liquids Arising from a Phase Transition of Ammonium Inner Salts Containing an Ether Bond
resolves10.1021/ma00016a007Poly(ammonium alkoxydicyanoethenolates) as new hydrophobic and highly dipolar poly(zwitterions). 1. Synthesis
resolves10.1080/026782999204327Long alkyl chain dimethylammonioalkoxydicyanoethenolates as new zwitterionic thermotropic liquid crystals
resolves10.1039/C0CC03754KLow-melting zwitterion: effect of oxyethylene units on thermal properties and conductivity
resolves10.1149/1.1394036Preparation of Novel Room-Temperature Molten Salts by Neutralization of Amines
resolves10.1016/S1452-3981(23)04990-8Dependence of Transport Properties of Concentrated Lithium Salt Solutions on Temperature and Composition in an Imidazolium-Based Liquid Zwitterion Containing an Oligo(Ethylene Oxide) Unit
resolves10.1016/j.jpowsour.2009.10.029The conductivity of pyrrolidinium and sulfonylimide-based ionic liquids: A combined experimental and computational study
resolves10.1002/pat.151Amorphous blends of poly(zwitterions) and zwitterionomers of the ammonioalkoxydicyanoethenolate type with some alkali metal salts
resolves10.1002/pat.261Novel polymer electrolytes prepared by copolymerization of ionic liquid monomers
resolves10.1021/ma00050a015Effect of anion polarization on conductivity behavior of poly(ethylene oxide) complexed with alkali salts
resolves10.1295/polymj.38.117Electrochemical and Spectroscopic Analyses of Lithium Ion Conductive Polymers Prepared by the Copolymerization of Ionic Liquid Monomer with Lithium Salt Monomer
resolves10.1021/cm021298qToward a New Type of Anhydrous Organic Proton Conductor Based on Immobilized Imidazole
resolves10.1021/jp022347pBrønsted Acid−Base Ionic Liquids as Proton-Conducting Nonaqueous Electrolytes
resolves10.1007/s00289-006-0527-1Novel ion conductive matrix via dehydrocoupling polymerization of imidazolium-type ionic liquid and lithium 9-borabicyclo[3,3,1]nonane hydride
resolves10.1002/pat.1204Influence of imidazolium‐based ionic liquids on the synthesis of amphiphilic copolymers based on <i>n</i>‐butylmethacrylate and a zwitterionic methacrylate
resolves10.1021/ma902028uEffect of Ionic Liquid on Mechanical Properties and Morphology of Zwitterionic Copolymer Membranes
resolves10.1039/b508035eThe zwitterion effect in proton exchange membranes as synthesised by polymerisation of bicontinuous microemulsions
resolves10.1002/adma.201100942Anisotropic Proton‐Conductive Materials Formed by the Self‐Organization of Phosphonium‐Type Zwitterions
resolves10.1021/ic951325xHydrophobic, Highly Conductive Ambient-Temperature Molten Salts
resolves10.1039/c2cs35151jAqueous biphasic systems: a boost brought about by using ionic liquids
resolves10.1002/anie.200604402LCST‐Type Phase Changes of a Mixture of Water and Ionic Liquids Derived from Amino Acids
resolves10.1071/CH11278Material design of ionic liquids to show temperature-sensitive LCST-type phase transition after mixing with water
resolves10.1039/c2cp24026bTemperature-responsive ionic liquid/water interfaces: relation between hydrophilicity of ions and dynamic phase change
resolves10.1039/C5CP00768BIs seven the minimum number of water molecules per ion pair for assured biological activity in ionic liquid–water mixtures?
resolves10.1039/c3cp52178hPhosphonium phosphonate-type zwitterion–water mixed systems showing variable hydrogen bonding ability as a function of temperature
resolves10.1002/chem.201600973Zwitterion/Brønsted Acid Mixtures Showing Controlled Lower Critical Solution Temperature‐Type Phase Changes with Water
resolves10.1039/C4CC06210HAmmonium based zwitterions showing both LCST- and UCST-type phase transitions after mixing with water in a very narrow temperature range
resolves10.1002/bip.21526Enzymatic activity and thermal stability of metallo proteins in hydrated ionic liquids
resolves10.1021/bm070041oSolubility and Stability of Cytochrome <i>c</i> in Hydrated Ionic Liquids: Effect of Oxo Acid Residues and Kosmotropicity
resolves10.1039/c2cc36119aAddition of suitably-designed zwitterions improves the saturated water content of hydrophobic ionic liquids
resolves10.3390/ijms140918350Design of Phosphonium-Type Zwitterion as an Additive to Improve Saturated Water Content of Phase-Separated Ionic Liquid from Aqueous Phase toward Reversible Extraction of Proteins
The 6 references without a DOI — listed, not checked
no DOI — not checkedIonic Liquids in Synthesis , ed. P. Wasserscheid and T. Welton , Wiley-VCH , Weinheim , 2nd edn, 2008
no DOI — not checkedH. Ohno , Electrochemical Aspects of Ionic Liquids , 2nd edn, Wiley Interscience , New York , 2011
no DOI — not checkedF. M. Gray , Polymer electrolytes (RSC Materials Monographs) , Royal Society of Chemistry , 1997
no DOI — not checkedC7CP08592C-(cit62)/*[position()=1]
no DOI — not checkedC7CP08592C-(cit68)/*[position()=1]
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