High Performing Biobased Ionic Liquid Crystal Electrolytes for Supercapacitors
Sasi, R.; Sarojam, S.; Devaki, S.J.
ACS Sustainable Chemistry-Engineering 4(6): 3535-3543
2016
ISSN/ISBN: 2168-0485 DOI: 10.1021/acssuschemeng.6b00585
Accession: 084449348
Full-Text Article emailed within 0-6 h
Payments are secure & encrypted

References
Yang, K.; Liao, Z.; Zhang, Z.; Yang, L.; Hirano, S. 2019: Ionic plastic crystal-polymeric ionic liquid solid-state electrolytes with high ionic conductivity for lithium ion batteries Materials Letters 236: 554-557Song, H.; Zhao, N.; Qin, W.; Duan, B.; Ding, X.; Wen, X.; Qiu, P.; Ba, X. 2015: High-performance ionic liquid-based nanocomposite polymer electrolytes with anisotropic ionic conductivity prepared by coupling liquid crystal self-templating with unidirectional freezing Journal of Materials Chemistry A 3(5): 2128-2134
Chen, Y.; Zhang, X.; Zhang, D.; Ma, Y. 2012: High power density of graphene-based supercapacitors in ionic liquid electrolytes Materials Letters 68: 475-477
Zhang, S.; Brahim, S.; Maat, S. 2017: High-voltage operation of binder-free CNT supercapacitors using ionic liquid electrolytes Journal of Materials Research 33(9): 1179-1188
Al‐Masri, D.; Yunis, R.; Hollenkamp, A.F.; Pringle, J.M. 2020: Designing Solid‐State Electrolytes through the Structural Modification of a High‐Performing Ionic Liquid ChemElectroChem 7(19): 4118-4123
Pereira, N.d.M.; Trigueiro, J.P.C.; Monteiro, I.d.F.; Montoro, L.A.; Silva, G.G. 2018: Graphene oxide – Ionic liquid composite electrolytes for safe and high-performance supercapacitors Electrochimica Acta 259: 783-792
Arbizzani, C.; Biso, M.; Cericola, D.; Lazzari, M.; Soavi, F.; Mastragostino, M. 2008: Safe, high-energy supercapacitors based on solvent-free ionic liquid electrolytes Journal of Power Sources 185(2): 1575-1579
Wang, P-Hsin.; Wang, T-Liu.; Lin, W-Churng.; Lin, H-Yin.; Lee, M-Hwa.; Yang, C-Hsin. 2018: Crosslinked Polymer Ionic Liquid/Ionic Liquid Blends Prepared by Photopolymerization as Solid-State Electrolytes in Supercapacitors Nanomaterials 8(4)
Yao, C.H.E.N.; Xiong, Z.H.A.N.G.; Dacheng, Z.H.A.N.G.; Peng, Y.U.; Yanwei, M.A. 2011: High performance supercapacitors based on reduced graphene oxide in aqueous and ionic liquid electrolytes Carbon (New York) 49(2): 573-580
Ivol, F.; Porcher, M.; Ghosh, A.; Jacquemin, J.; Ghamouss, F. 2020: Phenylacetonitrile (C6H5CH2CN) Ionic Liquid Blends as Alternative Electrolytes for Safe and High-Performance Supercapacitors Molecules 25(11)
Seenath, J.S.; Jabraoui, H.; Stettner, T.; Balducci, A.; Estve, A.; Pech, D.; Rochefort, D. 2025: Pyrrolidinium-based protic ionic liquid electrolytes for high performance RuO2 micro-supercapacitors Electrochimica Acta 539: 147032
Su, H.; Zhang, H.; Liu, F.; Chun, F.; Zhang, B.; Chu, X.; Huang, H.; Deng, W.; Gu, B.; Zhang, H.; Zheng, X.; Zhu, M.; Yang, W. 2017: High power supercapacitors based on hierarchically porous sheet-like nanocarbons with ionic liquid electrolytes Chemical Engineering Journal 322: 73-81
Zhao, H.; Zhang, H.; Wang, Z.; Jiang, X.; Xie, Y.; Xu, Z.; Wang, Y.; Yang, W. 2021: Chain-Elongated Ionic Liquid Electrolytes for Low Self-Discharge All-Solid-State Supercapacitors at High Temperature Chemsuschem 14(18): 3895-3903
He, X.; Zhang, H.; Xie, K.; Xia, Y.; Zhao, Z.; Wang, X. 2016: Synthesis of Mesoporous Carbons from Rice Husk for Supercapacitors with High Energy Density in Ionic Liquid Electrolytes Journal of Nanoscience and Nanotechnology 16(3): 2841-2846
Perera Jayawickramage, R.A.; Ferraris, J.P. 2019: High performance supercapacitors using lignin based electrospun carbon nanofiber electrodes in ionic liquid electrolytes Nanotechnology 30(15): 155402
Zhong, H.; Xu, F.; Li, Z.; Fu, R.; Wu, D. 2013: High-energy supercapacitors based on hierarchical porous carbon with an ultrahigh ion-accessible surface area in ionic liquid electrolytes Nanoscale 5(11): 4678-4682
Wu, Y.; Cao, J.; Zhou, Z.; Zhao, X.; Zhuang, Q.; Wei, Y.; Zhao, M.; Zhao, Y.; Bai, H. 2020: Transforming waste sugar solution into N-doped hierarchical porous carbon for high performance supercapacitors in aqueous electrolytes and ionic liquid International Journal of Hydrogen Energy 45(56): 31367-31379
Yan, R.; Wang, X.; Liu, S.; He, Z.; Wang, L.; Miao, Z. 2025: Liquid crystal elastomer-polymeric ionic liquid copolymers for high-performance solid electrolytes in lithium-metal batteries Journal of Alloys and Compounds 1040: 183621
Liu, A.; Zhang, H.; Xing, C.; Wang, Y.; Zhang, J.; Zhang, X.; Zhang, S. 2021: Intensified Energy Storage in High-Voltage Nanohybrid Supercapacitors via the Efficient Coupling between TiNb2O7/Holey-rGO Nanoarchitectures and Ionic Liquid-Based Electrolytes Acs Applied Materials and Interfaces 13(18): 21349-21361
Liu, M.; Lu, C.; Xu, Y.; Hu, Y.; Li, J.; Zhang, H.; Zhang, Y.; Zhang, B.; Kong, L.; Liu, W.; Niu, W.; Zhao, K.; Lee, L.; Wang, Z.M.; Chueh, Y. 2019: Three-Dimensional Interconnected Reticular Porous Carbon from Corn Starch by a Sample Sol–Gel Method Toward High-Performance Supercapacitors with Aqueous and Ionic Liquid Electrolytes ACS Sustainable Chemistry-Engineering 7(22): 18690-18699