a.State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University, Nanjing 211816, China
b.State Key Laboratory of Silicon Materials, School of Materials Science and Engineering, Zhejiang University, Hangzhou 310058, China
c.School of Engineering, Hangzhou City University, Hangzhou 310015, China
jian.wu@njtech.edu.cn
收稿:2025-12-09,
录用:2026-02-06,
网络首发:2026-05-14,
纸质出版:2026-06-05
Scan QR Code
Gao, X.; Ye, J. S.; Liu, Z. J.; Wu, J.; Bao, N. Z. Plasticizing and strengthening poly(vinyl chloride) with structurally different ionic liquids. Chinese J. Polym. Sci. 2026, 44, 1912–1925
Xiang Gao, Ji-Shuo Ye, Zhi-Ji Liu, et al. Plasticizing and Strengthening Poly(vinyl chloride) with Structurally Different Ionic Liquids[J]. Chinese Journal of Polymer Science, 2026, 44(6): 1912-1925.
Gao, X.; Ye, J. S.; Liu, Z. J.; Wu, J.; Bao, N. Z. Plasticizing and strengthening poly(vinyl chloride) with structurally different ionic liquids. Chinese J. Polym. Sci. 2026, 44, 1912–1925 DOI: 10.1007/s10118-026-3618-5.
Xiang Gao, Ji-Shuo Ye, Zhi-Ji Liu, et al. Plasticizing and Strengthening Poly(vinyl chloride) with Structurally Different Ionic Liquids[J]. Chinese Journal of Polymer Science, 2026, 44(6): 1912-1925. DOI: 10.1007/s10118-026-3618-5.
This work investigates the reinforcing effects of ionic liquid monomer
linear and branched poly(ionic liquids) on poly(vinyl chloride) (PVC). Linear poly(ionic liquids) exhibit the best strength and toughness
which are significantly superior to dioctyl phthalate (DOP).
This study simultaneously plasticizes and strengthens poly(vinyl chloride) (PVC) with structurally different ionic liquids (ILs)
namely monomeric [Bmim
]
NTf
2
linear polymerized PImC
6
NTf
2
and branched polymerized P(VIm-4)NTf
2
. Notably
PImC
6
NTf
2
exhibits the best performance. Dynamic mechanical analysis reveals that the glass transition temperature of PImC
6
NTf
2
/PVC composite film is lower than that of dioctyl phthalate (DOP)/PVC
indicating enhanced processability. Compared with neat PVC film
the 4% PImC
6
NTf
2
/PVC film exhibits 747.2%
165.4%
and 49.1% increases in elongation at break
tensile strength
and Young’s modulus
resp
ectively
along with a 27.4-fold rise in fracture energy. Additionally
the thermal stability
hydrophobicity
and wear resistance of PVC are also improved. These findings demonstrate the great potential of linear polymerized ILs as innovative PVC plasticizers.
Yarahmadi, N.; Jakubowicz, I.; Martinsson, L. PVC flooringsas post-consumer products for mechanical recycling and energy recovery. Polym. Degrad. Stabil. 2003 , 79 , 439−448..
Braun, D. PVC - Origin, growth, and future. J. Vinyl Addit. Technol. 2001 , 7 , 168−176..
Sombatsompop, N.; Thongsang, S. Rheology, morphology, and mechanical and thermal properties of recycled PVC pipes. J. Appl. Polym. Sci. 2001 , 82 , 2478−2486..
Dias, A. M. A.; Marceneiro, S.; Braga, M. E. M.; Coelho, J. F. J.; Ferreira, A. G. M.; Simoes, P. N.; Veiga, H. I. M.; Tomé, L. C.; Marrucho, I. M.; Esperança, J.; Matias, A. A.; Duarte, C. M. M.; Rebelo, L. P. N.; de Sousa, H. C. Phosphonium-based ionic liquids as modifiers for biomedical grade poly(vinyl chloride). Acta Biomater. 2012 , 8 , 1366−1379..
Saad, A. L. G.; Sayed, W. M.; Ahmed, M. G. M.; Hassan, A. M. Preparation and properties of some filled poly(vinyl chloride) compositions. J. Appl. Polym. Sci. 1999 , 73 , 2657−2670..
Mijangos, C.; Calafel, I.; Santamaría, A. Poly(vinyl chloride), a historical polymer still evolving. Polymer 2023 , 266 , 125610..
Che, Q. T.; Zhu, Z. F.; Chen, N.; Zhai, X. Methylimidazolium group - Modified polyvinyl chloride (PVC) doped with phosphoric acid for high temperature proton exchange membranes. Mater. Des. 2015 , 87 , 1047−1055..
Yu, B. Y.; Lee, A. R.; Kwak, S. Y. Gelation/fusion behavior of PVC plastisol with a cyclodextrin derivative and an anti-migration plasticizer in flexible PVC. Eur. Polym. J. 2012 , 48 , 885−895..
Stark, T. D.; Choi, H.; Diebel, P. W. Influence of plasticizer molecular weight on plasticizer retention in PVC geomembranes. Geosynth. Int. 2005 , 12 , 99−110..
Braslau, R.; Schäffner, F.; Earla, A. Polymeric phthalates: Potential nonmigratory macromolecular plasticizers. J. Polym. Sci. Pol. Chem. 2013 , 51 , 1175−1184..
Rahman, M.; Brazel, C. S. The plasticizer market: An assessment of traditional plasticizers and research trends to meet new challenges. Prog. Polym. Sci. 2004 , 29 , 1223−1248..
Demir, A. P. T.; Ulutan, S. Migration of phthalate and non-phthalate plasticizers out of plasticized PVC films into air. J. Appl. Polym. Sci. 2013 , 128 , 1948−1961..
Han, Y.; Weng, Y. X.; Zhang, C. L. Development of biobased plasticizers with synergistic effects of plasticization, thermal stabilization, and migration resistance: a review. J. Vinyl Addit. Technol. 2024 , 30 , 26−43..
Fu, Q. H.; Long, Y. L.; Gao, Y. Y.; Ling, Y.; Qian, H.; Wang, F.; Zhu, X. B. Synthesis and properties of castor oil based plasticizers. RSC Adv. 2019 , 9 , 10049−10057..
Liu, T.; Jiang, P. P.; Liu, H. L.; Li, M. T.; Dong, Y. M.; Wang, R. M.; Wang, Y. J. Performance testing of a green plasticizer based on lactic acid for PVC. Polym. Test 2017 , 61 , 205−213..
[Wang, B. S.; Qin, L.; Mu, T. C.; Xue, Z. M.; Gao, G. H. Are Ionic liquids chemically stable Chem. Rev . 2017 , 117 , 7113−7131..
Xue, Z. M.; Qin, L.; Jiang, J. Y.; Mu, T. C.; Gao, G. H. Thermal, electrochemical and radiolytic stabilities of ionic liquids. Phys. Chem. Chem. Phys. 2018 , 20 , 8382−8402..
Marceneiro, S.; Hu, Q. Y.; Dias, A. M. A.; Lobo, I.; Dias, I.; de Pinho, E.; Rasteiro, M. G.; de Sousa, H. C. Effects of two phosphonium-type ionic liquids on the rheological and thermomechanical properties of emulsion poly(vinyl chloride)based formulations plasticized with DINP and CITROFOL. Ind. Eng. Chem. Res. 2014 , 53 , 16061−16071..
Esperança, J.; Lopes, J. N. C.; Tariq, M.; Santos, L.; Magee, J. W.; Rebelo, L. P. N. Volatility of Aprotic Ionic Liquids - a review. J. Chem. Eng. Data 2010 , 55 , 3−12..
Cao, Y. Y.; Mu, T. C. Comprehensive investigation on the thermal stability of 66 ionic liquids by thermogravimetric analysis. Ind. Eng. Chem. Res. 2014 , 53 , 8651−8664..
[Holbrey, J. D.; Seddon, K. R. The phase behaviour of 1-alkyl-3-methylimidazolium tetrafluoroborates; ionic liquids and ionic liquid crystals. J. Chem. Soc.-Dalton Trans . 1999 , 2133−2139..
Marceneiro, S.; Alves, R.; Lobo, I.; Dias, I.; de Pinho, E.; Dias, A. M. A.; Rasteiro, M. G.; de Sousa, H. C. Effects of poly(vinyl chloride) morphological properties on the rheology/aging of plastisols and on the thermal/leaching properties of films formulated using nonconventional plasticizers. Ind. Eng. Chem. Res. 2018 , 57 , 1454−1467..
Welton, T. Room-temperature ionic liquids. Solvents for synthesis and catalysis. Chem. Rev. 1999 , 99 , 2071−2083..
Rahman, M.; Brazel, C. S. Ionic liquids: New generation stable plasticizers for poly(vinyl chloride). Polym. Degrad. Stabil. 2006 , 91 , 3371−3382..
Dawelbeit, A.; Yu, M. H. Tentative Confinement of Ionic Liquids in Nylon 6 Fibers: A Bridge Between Structural Developments and High-Performance Properties. ACS Omega 2021 , 6 , 3535−3547..
Plamus, T.; Savest, N.; Viirsalu, M.; Harz, P.; Tarasova, E.; Krasnou, I.; Vassiljeva, V.; Kallavus, U.; Krumme, A. The effect of ionic liquids on the mechanical properties of electrospun polyacrylonitrile membranes. Polym. Test 2018 , 71 , 335−343..
Liu, Z. W.; Li, B. B.; Liu, Y. D.; Liang, Y. R. Integrated bendingactuation and the self-sensing capability of poly(vinyl chloride) gels with ionic liquids. Adv. Funct. Mater. 2022 , 32 , 2204259..
Li, B. B.; Liu, Z. W.; Liu, Y. D.; Liang, Y. R. Effect of ionic liquids on structure and electromechanical properties of plasticized polyvinyl chloride (PVC) gels. Polymer 2024 , 294 , 126714..
Chen, B. H.; Zhang, S. G.; Zhang, Y. Poly(ionic liquid)s with unique adsorption-swelling ability toward epoxides for efficient atmospheric CO 2 conversion under cocatalyst-/metal-/solvent-free c onditions. Green Chem. 2023 , 25 , 7743−7755..
Tian, Y. B.; Xing, C.; Wang, W. X.; Zhang, S. G.; Zhang, Y. A highly crosslinked, mesoporous poly(ionic liquid) containing salen-Pd for efficient, eco-friendly Suzuki-Miyaura coupling reactions. New J. Chem. 2022 , 46 , 8855−8862..
Zhang, J.; Chen, Z. Y.; Zhang, Y.; Dong, S. Y.; Chen, Y. F.; Zhang, S. G. Poly(ionic liquid)s containing alkoxy chains and bis(trifluoromethanesulfonyl)imide anions as highly adhesive materials. Adv. Mater. 2021 , 33 , 2100962..
Qian, W. J.; Texter, J.; Yan, F. Frontiers in poly(ionic liquid)s: Syntheses and applications. Chem. Soc. Rev. 2017 , 46 , 1124−1159..
Guo, L. Y.; Ma, X. Y.; Zhang, B.; Wang, Z. M.; Huang, P. C. Synthesis of polyether imidazole ionic liquid and its modification on polypropylene crystal structure and mechanical properties. e-Polymers 2015 , 15 , 33−37..
Ho, W. Y.; Hsieh, Y. N.; Lin, W. C.; Kao, C. L.; Huang, P. C.; Yeh, C. F.; Pan, C. Y.; Kuei, C. H. High temperature imidazolium io nic polymer for gas chromatography. Anal. Methods 2010 , 2 , 455−457..
Xie, Y. Q.; Liang, J.; Fu, Y. W.; Huang, M. T.; Xu, X.; Wang, H. T.; Tu, S.; Li, J. Hypercrosslinked mesoporous poly(ionic liquid)s with high ionic density for efficient CO 2 capture and conversion into cyclic carbonates. J. Mater. Chem. A 2018 , 6 , 6660−6666..
Rey, I.; Johansson, P.; Lindgren, J.; Lassègues, J. C.; Grondin, J.; Servant, L. Spectroscopic and Theoretical Study of (CF 3 SO 2 ) 2 N - (TFSI - ) and (CF 3 SO 2 ) 2 NH (HTFSI). J. Phys. Chem. A 1998 , 102 , 3249−3258..
Wu, J.; Mu, L. W.; Feng, X.; Lu, X. H.; Larsson, R.; Shi, Y. J. Poly(alkylimidazolium bis(trifluoromethylsulfonyl)imide)-based polymerized ionic liquids: a potential high-performance lubricating grease. Adv. Mater. Interfaces 2019 , 6 , 1801796..
Shaplov, A. S.; Ponkratov, D. O.; Vygodskii, Y. S. Poly(ionic liquid)s: Synthesis, properties, and application. Polym. Sci. Ser. B 2016 , 58 , 73−142..
Simoes, P. N.; Coelho, J. F. J.; Gonçalves, P.; Gil, M. H. Comparative non-isothermal kinetic analysis of thermal degradation of poly(vinyl chloride) prepared by living and conventional free radical polymerization methods. Eur. Polym. J. 2009 , 45 , 1949−1959..
Vadukumpully, S.; Paul, J.; Mahanta, N.; Valiyaveettil, S. Flexible conductive graphene/poly(vinyl chloride) composite thin films with high mechanical strength and thermal stability. Carbon 2011 , 49 , 198−205..
Wang, C.; He, J. W.; Zou, L. M.; Wang, H. J.; Wang, Y. L.; Li, Y. V. Plasticizing effect of 1-butyl-3-methylimidazolium bromide content on poly(vinyl alcohol). Polym. Int. 2023 , 72 , 500−507..
Marcilla, R.; Blazquez, J. A.; Fernandez, R.; Grande, H.; Pomposo, J. A.; Mecerreyes, D. Synthesis of novel polycations using the chemistry of ionic liquids. Macromol. Chem. Phys. 2005 , 206 , 299−304..
Huddleston, J. G.; Visser, A. E.; Reichert, W. M.; Willauer, H. D.; Broker, G. A.; Rogers, R. D. Characterization and comparison of hydrophilic and hydrophobic room temperature ionic liquids incorporating the imidazolium cation. Green Chem. 2001 , 3 , 156−164..
Bains, D.; Singh, G.; Bhinder, J.; Agnihotri, P. K.; Singh, N. Ionic liquid-functionalized multiwalled carbon nanotube-based hydrophobic coatings for robust antibacterial applications. ACS applied bio materials 2020 , 3 , 2092−2103..
Turgut, H. I.; Eyupoglu, V.; Kumbasar, R. A. The comprehensive investigation of the room temperature ionic liquid additives in PVC based polymer inclusion membrane for Cr(VI) transport. J. Vinyl Addit. Technol. 2019 , 25 , E107−E119..
Lee, S.; Park, M. S.; Shin, J.; Kim, Y. W. Effect of the individual and combined use of cardanol-based plasticizers and epoxidized soybean oil on the properties of PVC. Polym. Degrad. Stabil. 2018 , 147 , 1−11..
Aboghoniem, A. M.; Youssef, M. A.; Darwish, O. M.; Gaballah, S. T.; Rabie, S. T. Microwave-assisted preparation of fatty acid esters based eco-friendly plasticizers for biologically-active thiazole-functionalized PVC. J. Vinyl Addit. Technol. 2022 , 28 , 828−843..
Zhu, H. C.; Yang, J. J.; Wu, M. Y.; Wu, Q. Y.; Liu, J. Y.; Zhang, J. A . Biobased plasticizers from tartaric acid: Synthesis and effect of alkyl chain length on the properties of poly(vinyl chloride). ACS Omega 2021 , 6 , 13161−13169..
Hou, L. X.; Wang, S. Study on ionic liquid [bmim ] [PF 6 ] and [hmim ] [PF 6 ] as plasticizer for PVC paste resin. Polym. Bull. 2011 , 67 , 1273−1283..
Li, X.; Qin, A. W.; Zhao, X. Z.; Ma, B. M.; He, C. J. The plasticization mechanism of polyacrylonitrile/1-butyl-3-methylimidazolium chloride system. Polymer 2014 , 55 , 5773−5780..
Zhao, Q. Y.; Liu, X. H.; Deng, S.; Zheng, X. H.; Zeng, B. R.; Liu, X. Y.; Xu, Y. T.; Yuan, C. H.; Dai, L. Z. Construction of phosphorus-containing polyimine vitrimer film by incorporating ionic liquid BMIM·PF 6 for enhanced mechanical, flame-retardant and reprocessable properties. Chem. Eng. J. 2024 , 495 , 153283..
[Daniels, P. H. A brief overview of theories of PVC plasticization and methods used to evaluate PVC-plasticizer interaction. J. Vinyl Addit. Technol. 2009 , 15 , 219−223..
Yasui, T.; Kamio, E.; Matsuyama, H. Tough and stretchable inorganic/organic double network ion gel containing gemini-type ionic liquid as a multiple hydrogen bond cross-linker. RSC Adv. 2019 , 9 , 11870−11876..
Liu, S. H.; Tang, C.; She, J. G.; Lu, X. L.; Zhang, H. W.; Wu, C. R. Poly(ionic liquid) copolymer blended polyvinyl chloride ultrafiltration membranes with simultaneously improved persistent hydrophilicity and pore uniformity. Sep. Purif. Technol. 2022 , 295 , 121270..
Zhang, X. R.; Fu, Q. J.; Wang, Y. C.; Zhao, H. A.; Hao, S. W.; Ma, C.; Xu, F.; Yang, J. Tough liquid-free ionic conductive elastomers with robust adhesion and self-healing properties for ionotronic devices. Adv. Funct. Mater. 2024 , 34 , 2307400..
Xie, H. H.; Xia, H.; Qin, Z. H.; Dong, Z. C.; Wang, X.; Sun, L.; Liu, Y.; Zhang, Y. Role of the side chain configuration on the effective recovery of phenolic compounds using polymer inclusion membranes based on tertiary amine. React. Funct. Polym. 2024 , 204 , 106030..
Mukherjee, R. B.; Chikhaliya, N. P. Phosphorylated Simarouba Glauca seed oil as a sustainable flame-retardant plasticizer for PVC: Synthesi s, characterization, and performance evaluation. J. Mol. Struct. 2025 , 1346 , 143212..
Dong, K. Y.; Che, R. Y.; Li, W. X.; Tang, X. M.; Xue, C. H.; Nan, H.; Xu, S. I.; Yang, G. J.; Zhong, H. Y. Influence of synergistic plasticization of epoxy 1,6-hexanediol oleate and DOA on the properties of PVC films. Polym. Bull. 2025 , 82 , 6549−6567..
Zhou, X.; Hu, Z. Y.; Jiang, F.; Yang, Q. C.; Gao, M. Influence of phosphomolybdates on flame retardancy and smoke suppression of PVC matrix flame retardant composites. Molecules 2025 , 30 , 4269..
Jia, P. Y.; Zhang, M.; Hu, L. H.; Feng, G. D.; Bo, C. Y.; Zhou, Y. H. Synthesis and application of environmental castor oil based polyol ester plasticizers for poly(vinyl chloride). ACS Sustain. Chem. Eng. 2015 , 3 , 2187−2193..
Abdel-Monem, R. A.; Gaballah, S. T.; Rabie, S. T. Enhanced performance of eco-friendly PVC by utilizing halo-benzothiazole derivatives and glucose/fatty acids esters. J. Vinyl Addit. Technol. 2024 , 30 , 439−455..
[Jackson, M. A.; Selling, G. W.; Evans, K. O.; Wegener, E. C. Cuphea as a source of fully crop-based plasticizers for poly(vinyl chloride). ACS Sustain. Chem. Eng . 2024 , 12 , 11531−11540..
Qian, B. F.; Peng, P. P.; Wang, C. L.; Wang, L. J.; Zhang, J. N.; Wu, M. Y.; Liu, J. Y.; Wu, Q. Y.; Yang, J. J. Synthesis, characterization and performance evaluation of a nontoxic functional plasticizer for poly(vinyl chloride) derived from sustainable lactic acid. J. Clean Prod. 2024 , 450 , 141895..
You, Z. Y.; Nie, X.; Yu, M.; Fu, R. L.; Chen, J. Preparation of internally-plasticized poly(vinyl chloride) by grafting hyperbranched cardanol epoxy polyglycerol. J. Appl. Polym. Sci. 2025 , 142 , e56338..
Rajput, C. V.; Mukherjee, R. B.; Sastry, N. V.; Chikhaliya, N. P. Epoxidized Cassia fistula seed oil as bio-based plasticizer for poly(vinyl chloride) soft films. ACS Appl. Polym. Mater. 2022 , 4 , 8926−8941..
De Bruyne, A.; Cérdan, K.; O'Rourke, G.; Stuyck, W.; Leinders, J.; Denayer, M.; Vekeman, J.; De Proft, F.; Van Puyvelde, P.; De Vos, D. E. Evaluation of green biobased plasticizers in poly(vinyl chloride): sustainability, thermal behavior, mechanical properties, and durability. ACS Appl. Polym. Mater. 2024 , 6 , 6831−6842..
Dong, K. Y.; Xue, C. H.; Nan, H.; Huang, W. Y.; Zhong, H. Y.; Liu, G. X.; Yang, G. J.; Xu, S. I.; Zhang, J. J. Synthesized the cold-resistant plasticizer epoxidized 1,6-hexanediol oleate and effects on the properties of polyvinyl chloride. Polym. Bull. 2024 , 81 , 15043−15064..
Wu, J.; Luo, Y. L.; Chen, Y. F.; Lu, X. H.; Feng, X.; Bao, N. Z.; Shi, Y. J. Poly(ionic liquid)s as lubricant additives with insight into adsorption-lubrication relationship. Tribol. Int. 2022 , 165 , 107278..
Li, H. Y.; Wang, Q.; Wang, H. Y.; Cui, Y. X.; Zhu, Y. J.; Wang, B. H. Fabrication of thermally stable polysulfone microcapsules containing [EMIm ] [NTf 2 ] ionic liquid for enhancement of in situ self-lubrication effect of epoxy. Macromol. Mater. Eng. 2016 , 301 , 1473−1481..
0
浏览量
7
Downloads
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802046900号