Weingartner H. Understanding ionic liquids at the molecular level:Facts, problems, and controversies[J]. Angew. Chem. Int. Ed. Engl., 2008, 47:654-670.
Salamone J C, Israel S C, Taylor P, et al. Polyvinylimidazolium salts of varying hydrophilic-hydrophobic character[J]. Journal of Polymer Science Polymer Symposium, 1974, 45:65-73.
[4]
Washiro S, Yoshizawa M, Nakajima H, et al. Highly ion conductive flexible films composed of network polymers based onpolymerizable ionic liquids[J]. Polymer, 2004, 45:1577-1582.
[5]
Cheng S, Beyer F L, Mather B D, et al. Phosphonium-containing ABA triblock copolymers:Controlled free radical polymerization of phosphonium ionic liquids[J]. Macromolecules, 2011, 44:6509-6517.
[6]
Mecerreyes D. Polymeric ionic liquids:Broadening the properties and applications of polyelectrolytes[J]. Progress in Polymer Science, 2011, 36:1629-1648.
[7]
Kohno Y, Ohno H. Key factors to prepare polyelectrolytes showing temperature-sensitive lower critical solution temperature-type phase transitions in water[J]. The Australian Journal of Chemistry, 2012, 65:91-94.
[8]
Kohno Y, Ohno H. Ionic liquid/water mixtures:From hostility to conciliation[J]. Chemical Communications, 2012, 48:7119-7130.
[9]
Men Y, Li X H, Antonietti M, Yuan J. Poly(tetrabutylphosphonium 4-styrenesulfonate):A poly(ionic liquid) stabilizer for graphene being multi-responsive[J]. Polymer Chemistry, 2012, 3:871-873.
[10]
Xiong Y, Liu J, Wang Y, et al. One-step synthesis of thermosensitive nanogels based on highly crosslinked poly(ionic liquid)s[J]. Angewandte Chemie, 2012, 51:9114-9118.
[11]
Bellayer S, Gilman J, Eidelman N, et al. Preparation of homogeneously dispersed multiwalled carbon nanotube/polystyrene nanocomposites via melt extrusion using trialkyl imidazolium compatibilizer[J]. Adv. Funct. Mater., 2005, 15:910-916.
[12]
Fukushima T, Kosaka A, Ishimura Y, et al. Molecular ordering of organic molten salts triggered by single-walled carbon nanotubes[J]. Science, 2003, 300:2072-2074.
[13]
Wu B, Hu D, Kuang Y, et al. Functionalization of carbon nanotubes by an ionic-liquid polymer:Dispersion of Pt and PtRu nanoparticles on carbon nanotubes and their electrocatalytic oxidation of methanol[J]. Angew. Chem. Inter. Ed., 2009, 48:4751-4754.
[14]
Antonietti M, Shen Y, Nakanishi T, et al. Single-wall carbon nanotube latexes[J]. ACS Appl. Mater. Inter., 2010, 2:649-653.
[15]
Ohno H. Design of ion conductive polymers based on ionic liquids[J]. Macromolecular Symposium, 2007, 249-250:551-556.
[16]
Qiu B, Lin B, Qiu L, et al. Alkaline imidazolium- and quaternary ammonium-functionalized anion exchange membranes for alkaline fuel cell applications[J]. Journal of Material Chemistry, 2012, 22:1040-1045.
[17]
Deavin O I, Murphy S, Ong A L, et al. Anion-exchange membranes for alkaline polymer electrolyte fuel cells:Comparison of pendent benzyltrimethylammonium- and benzylmethylimidazolium-head- groups[J]. Energy and Environmental Science, 2012, 5:8584-8597.
[18]
Azaceta E, Marcilla R, Sanchez-Diaz A, et al. Synthesis and characterization of poly(1-vinyl-3-alkylimidazolium) iodide polymers for quasi-solid electrolytes in dye sensitized solar cells[J]. Electrochimica Acta, 2010, 56:42-46.
[19]
Zhao J, Shen X, Yan F, et al. Solvent-free ionic liquid/poly(ionic liquid) electrolytes for quasi-solid-state dye-sensitized solar cells[J]. Journal of Material Chemistry, 2011, 21:7326-7330.
[20]
Jin X, Tao J, Yang Y. Synthesis and characterization of poly(1-vinyl-3-propylimidazolium) iodide for quasi-solid polymer electrolyte in dye-sensitized solar cells[J]. Journal of Applied Polymer Science, 2010, 118:1455-1461.
Weng Tingting, Guo Jianwei, Li Xinming, et al. Synthesis of the polymerizable room temperature ionic liquid AMPS-TEA and superabsorbency for organic liquids of its copolymeric gels with acrylamide[J]. Designed Monomers and Polymers, 2014, 17(2):140-146.
[25]
Tang J, Tang H, Sun W, et al. Poly(ionic liquid)s as new materials for CO2 absorption[J]. Journal of Polymer Science Part A:Polymer Chemistry, 2005, 43:5477-5489.
[26]
Blasig A, Tang J, Hu X, et al. Magnetic suspension balance study of carbon dioxide solubility in ammonium-based polymerized ionic liquids:Poly(p-vinylbenzyltrimethyl ammonium tetrafluoroborate) and poly([2-(methacryloyloxy)ethyl] trimethyl ammonium tetrafluoroborate)[J]. Fluid Phase Equilibrium, 2007, 256:75-80.
[27]
Mineo P G, Livoti L, Giannetto M, et al. Very fast CO2 response and hydrophobic properties of novel poly(ionic liquid)s[J]. Journal of Material Chemistry, 2009, 19:8861-8870.
[28]
Mineo P G, Livoti L, Lo Schiavo S, et al. Fast and reversible CO2 quartz crystal microbalance response of vinylimidazolium-based poly(ionic liquid)s[J]. Polymer Advances in Technology, 2012, 23:1511-1519.
[29]
Fang W, Luo Z, Jiang J. CO2 capture in poly(ionic liquid) membranes:Atomistic insight into the role of anions[J]. Physical Chemistry Chemical Physics:PCCP, 2013, 15:651-658.
[30]
Pourjavadi A, Hosseini S H, Soleyman R. Crosslinked poly(ionic liquid) as high loaded dual acidic organocatalyst[J]. Journal of Molecular Catalysis A:Chemical, 2012, 365:55-59.
[31]
Xiong Y, Wang Y, Wang H, et al. A facile one-step synthesis to ionic liquid-based crosslinked polymeric nanoparticles and their application for CO2 fixation[J]. Polymer Chemistry, 2011, 2:2306-2315.
[32]
Zhao P, Leng Y, Wang J. Heteropolyanion-paired crosslinked ionic copolymer:An efficient heterogeneous catalyst for hydroxylation of benzene with hydrogen peroxide[J]. Chemical Engineering Journal, 2012, 204-206:72-78.
[33]
Jeon E H, Nguyen M D, Chung C I, et al. Polymer-supported methylselenite for the oxidative carbonylation of aniline[J]. Applied Catalysis A:General, 2007, 332:65-69.
[34]
Pourjavadi A, Hosseini S H, Soleyman R. Crosslinked poly(ionic liquid) as high loaded dual acidic organocatalyst[J]. Journal of Molecular Catalysis A:Chemical, 2012, 365:55-59.
[35]
Rebeca Marcilla, Marta Sanchez-Paniagua, Beatriz Lopez-Ruiz, et al. Synthesis and characterization of new polymeric ionic liquid microgels[J]. Journal of Polymer Science Part A:Polymer Chemistry, 2006, 44(13):3958-3965.
[36]
Yuan J, Giordano C, Antonietti M. Ionic liquid monomers and polymers as precursors of highly conductive, mesoporous, graphitic carbon nanostructures[J]. Chemical Materials, 2010, 22:5003-5012.
[37]
Bo X, Bai J, Ju J, et al. Highly dispersed Pt nanoparticles supported on poly(ionic liquids) derived hollow carbon spheres for methanol oxidation[J]. Journal of Power Sources, 2011, 196:8360-8365.
[38]
Yuan J, Marquez A G, Reinacher J, et al. Nitrogen-doped carbon fibers and membranes by carbonization of electrospun poly(ionic liquid)s[J]. Polymer Chemistry, 2011, 2:1654-1657.
[39]
Yan F, Texter J. Solvent-reversible poration in ionic liquid copolymers[J]. Angewandte Chemie, 2007, 46:2440-2443.
[40]
Bernd Jastorff, Kerstin Molter, Peter Behrend, et al. Progress in evaluation of risk potential of ionic liquids-basis for an eco-design of sustainable products[J]. Green Chem., 2005, 7:362-372.
[41]
Zhang Y, Chen X, Lan J, et al. Synthesis and biological applications of imidazolium-based polymerized ionic liquid as a gene delivery vector[J]. Chemical Biology & Drug Design, 2009, 74:282-288.
[42]
Lee S, Ringstrand B S, Stone D A, et al. Electrochemical activity of glucose oxidase on a poly(ionic liquid)-Au nanoparticle composite[J]. ACS Applied Materials & Interfaces, 2012, 4:2311-2317.
[43]
Lepez M S P, Mecerreyes D, Lepez-Cabarcos E, et al. Amperometric glucose biosensor based on polymerized ionic liquid microparticles[J]. Biosensors & Bioelectronics, 2006, 21:2320-2328.
[44]
Tang J, Radosz M, Shen Y. Poly(ionic liquid)s as optically transparent microwave-absorbing materials[J]. Macromolecules, 2007, 41:493-496.
[45]
Ricks-Laskoski H L, Snow A W. Synthesis and electric field actuation of an ionic liquid polymer[J]. J. Am. Chem. Soc., 2006, 128:12402-12403.
[46]
Li Y, Li G, Wang X, et al. Poly(ionic liquid)-wrapped single-walled carbon nanotubes for sub-ppb detection of CO2[J]. Chemical Communications, 2012, 48:8222-8224.
[47]
Wakizono S, Yamamoto K, Kadokawa Ji. Tunable multicolour emissions of polymeric ionic films carrying proper fluorescent dyemoieties[J]. Journal of Material Chemistry, 2012, 22:10619-10624.