2023
DOI: 10.1039/d3me00076a
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Influence of metal-coordinating comonomers on the coordination structure and binding in magnetic poly(ionic liquid)s

Abstract: Metal coordinating comonomers influence the transition metal complex, polymer–metal ion binding, and subsequently material properties in magnetic responsive poly(ionic liquid)s.

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Cited by 3 publications
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“…[4-vinylbenzyl]-3-methyl imidazolium chloride-co-styrene) Comparison of PIL-AuCl 4 − , AuCl 4 − 452 Poly(maleic anhydride-alt-styrene), PSM produced by RAFT polymerization and then postpolymerization-modified by mixtures of 2-aminomethylfuran and 1-methyl-3-aminopropyl imidazolium bromide, PSM-IL Comparison of PIL/IL-MWCNT and MWCNT 409 Poly(1-vinyl-3-hydroxyethyl imidazolium X − ); X = Cl − , HSO Comparison of PILs and IL (Cl − ) monomer 412 Poly(1-vinyl-3-butyl imidazolium bromide-co-divinylbenzene) Comparison of nanoporous carbons derived from PIL at varying carbonization temperatures 420 Poly(bis[1-vinyl-3-yl imidazolium Br − ]-1,4-butane) Comparison of PIL and poly(EGDMA) 423 Poly(1,7-diyl-3-butyl imidazolium dibromide) PIL aggregates 421 Poly(diallyldimethyl ammonium 2•TFSI) Gel composite electrolyte (PIL, IL, glass filler), PIL electrolyte, and IL electrolyte compared 453 Poly(1-vinyl-3-[ethyltrimethyl ammonium X − ] imidazolium X − ), poly(1-vinyl-3-butyl imidazolium X − ); X − = PF 6 − , TFSI − S−N stretching in TFSI − of PILs compared 422 Poly(tetraethyl ammonium 4-styrene sulfonyl[trifluoromethylsulfonyl] imide); poly(4vinylbenzyltrimethyl ammonium TFSI − ) Comparison of S−N stretching region (710−780 cm −1 ) for PILs 454 Poly(diallyldimethyl ammonium X − ); X − = FSI − ([CF 3 SO 2 ] 2 N − ), TSAC − ([CF 3 SO 2 ](CF 3 CO) N − ), TFSAM − ([CF 3 SO 2 ](CN)N − ) Comparisons of Raman spectra of PIL, IL, and PIL/ IL having different counteranions 424 Poly(1-[4-vinylbenzyl]-3-methyl imidazolium chloride-alt-[N-furfuryl maleiamide-maleic acid]) D and G graphene bands compared for rGO and rGO surface modified with PIL 148 Poly(4-styrenesulfonyl (trifluoro methylsulfonyl)imide][tetraalkyl ammonium); alkyl = methyl, ethyl, propyl Comparison of S−N stretching region of PIL with different counter styrenesulfonyl (trifluoro methylsulfonyl)imide Q + ); Q + = (CH 3 CH 2 ) 4 N + , Npropylpyridinium, 1-methyl-3-propyl imidazolium, N-methyl-N-propyl pyrrolidinium Comparison of S−N stretching region of PIL with different counter cations 426 Poly(1-butyl-3-(4-vinylbenzyl) imidazolium TFSI) Comparison of PIL/IL (diethylmethylammonium trifluoromethanesulfonate, dema TfO − ) with PIL/ PDADMAvinyl-3-phenyl imidazolium chloride) (PILben); poly(diallyldimethyl ammonium chloride) (PDADMC) PILben mixed with PDADMC; PILben mixed with PDADMC with and without and NaCl 239 Poly[epichlorohydrin phthalic anhydride N-methyl imidazolium chloride] Raman scattering dominated by D,G, and 2D bands of graphene 436 DABCO TFSI-oligo(oxyethylene)-poly(DABCO TFSI)-oligo(oxyethylene)ethylene chloride; DABCO = 1,4-diazabicyclo[2.2.2]octane PIL:LiTFSI mixture comparisons 446Poly(diallyldimethyl ammonium MCl 4 n+ -co-acrylamide); M = Co 2+ , Fe3+ Comparison of PILs with various magnetic metal anions and with chloride441 Poly(styrenesulfonate 1-butyl-3-methylimidazolium) SERS for Rhodamine 6G on nanoplates composing flower-like AuPt nanoballs h i b i t e d .…”
mentioning
confidence: 99%
“…[4-vinylbenzyl]-3-methyl imidazolium chloride-co-styrene) Comparison of PIL-AuCl 4 − , AuCl 4 − 452 Poly(maleic anhydride-alt-styrene), PSM produced by RAFT polymerization and then postpolymerization-modified by mixtures of 2-aminomethylfuran and 1-methyl-3-aminopropyl imidazolium bromide, PSM-IL Comparison of PIL/IL-MWCNT and MWCNT 409 Poly(1-vinyl-3-hydroxyethyl imidazolium X − ); X = Cl − , HSO Comparison of PILs and IL (Cl − ) monomer 412 Poly(1-vinyl-3-butyl imidazolium bromide-co-divinylbenzene) Comparison of nanoporous carbons derived from PIL at varying carbonization temperatures 420 Poly(bis[1-vinyl-3-yl imidazolium Br − ]-1,4-butane) Comparison of PIL and poly(EGDMA) 423 Poly(1,7-diyl-3-butyl imidazolium dibromide) PIL aggregates 421 Poly(diallyldimethyl ammonium 2•TFSI) Gel composite electrolyte (PIL, IL, glass filler), PIL electrolyte, and IL electrolyte compared 453 Poly(1-vinyl-3-[ethyltrimethyl ammonium X − ] imidazolium X − ), poly(1-vinyl-3-butyl imidazolium X − ); X − = PF 6 − , TFSI − S−N stretching in TFSI − of PILs compared 422 Poly(tetraethyl ammonium 4-styrene sulfonyl[trifluoromethylsulfonyl] imide); poly(4vinylbenzyltrimethyl ammonium TFSI − ) Comparison of S−N stretching region (710−780 cm −1 ) for PILs 454 Poly(diallyldimethyl ammonium X − ); X − = FSI − ([CF 3 SO 2 ] 2 N − ), TSAC − ([CF 3 SO 2 ](CF 3 CO) N − ), TFSAM − ([CF 3 SO 2 ](CN)N − ) Comparisons of Raman spectra of PIL, IL, and PIL/ IL having different counteranions 424 Poly(1-[4-vinylbenzyl]-3-methyl imidazolium chloride-alt-[N-furfuryl maleiamide-maleic acid]) D and G graphene bands compared for rGO and rGO surface modified with PIL 148 Poly(4-styrenesulfonyl (trifluoro methylsulfonyl)imide][tetraalkyl ammonium); alkyl = methyl, ethyl, propyl Comparison of S−N stretching region of PIL with different counter styrenesulfonyl (trifluoro methylsulfonyl)imide Q + ); Q + = (CH 3 CH 2 ) 4 N + , Npropylpyridinium, 1-methyl-3-propyl imidazolium, N-methyl-N-propyl pyrrolidinium Comparison of S−N stretching region of PIL with different counter cations 426 Poly(1-butyl-3-(4-vinylbenzyl) imidazolium TFSI) Comparison of PIL/IL (diethylmethylammonium trifluoromethanesulfonate, dema TfO − ) with PIL/ PDADMAvinyl-3-phenyl imidazolium chloride) (PILben); poly(diallyldimethyl ammonium chloride) (PDADMC) PILben mixed with PDADMC; PILben mixed with PDADMC with and without and NaCl 239 Poly[epichlorohydrin phthalic anhydride N-methyl imidazolium chloride] Raman scattering dominated by D,G, and 2D bands of graphene 436 DABCO TFSI-oligo(oxyethylene)-poly(DABCO TFSI)-oligo(oxyethylene)ethylene chloride; DABCO = 1,4-diazabicyclo[2.2.2]octane PIL:LiTFSI mixture comparisons 446Poly(diallyldimethyl ammonium MCl 4 n+ -co-acrylamide); M = Co 2+ , Fe3+ Comparison of PILs with various magnetic metal anions and with chloride441 Poly(styrenesulfonate 1-butyl-3-methylimidazolium) SERS for Rhodamine 6G on nanoplates composing flower-like AuPt nanoballs h i b i t e d .…”
mentioning
confidence: 99%