Anion Exchange Membranes Based on Poly(aryl piperidinium) Containing Both Hydrophilic and Hydrophobic Side Chains
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Wei Xu | Wen Zhang | L. Xu | Huimin Wang | Luofu Min | Yu-xin Wang | Yuxin Wang
[1] Shanjun Gao,et al. Preparation and Characterization of Non-N-Bonded Side-Chain Anion Exchange Membranes Based on Poly(2,6-dimethyl-1,4-phenylene oxide) , 2022, Industrial & Engineering Chemistry Research.
[2] Jaesik Yoon,et al. Fabrication and Characterization of Cross-Linked Phenyl-Acrylate-Based Ion Exchange Membranes and Performance in a Direct Urea Fuel Cell , 2021, Industrial & Engineering Chemistry Research.
[3] C. Lin,et al. Clustered piperidinium-functionalized poly(terphenylene) anion exchange membranes with well-developed conductive nanochannels. , 2021, Journal of colloid and interface science.
[4] A. Abdolmaleki,et al. New Strategy Based on Click Reaction for Preparation of Cross-Linked Poly(Benzimidazolium-Imide) as an Anion-Exchange Membrane with Improved Alkaline Stability , 2021 .
[5] Nanwen Li,et al. Piperidinium functionalized aryl ether-free polyaromatics as anion exchange membrane for water electrolysers: Performance and durability , 2021 .
[6] Zhe Wang,et al. Constructing micro-phase separation structure to improve the performance of anion-exchange membrane based on poly(aryl piperidinium) cross-linked membranes , 2021 .
[7] Chuan Hu,et al. Rigid crosslinkers towards constructing highly-efficient ion transport channels in anion exchange membranes , 2021 .
[8] L. Zhuang,et al. Comb-shaped anion exchange membranes: Hydrophobic side chains grafted onto backbones or linked to cations? , 2021 .
[9] Jun Zhao,et al. Twisted ether-free polymer based alkaline membrane for high-performance water electrolysis , 2020 .
[10] Won Hee Lee,et al. Poly(Alkyl‐Terphenyl Piperidinium) Ionomers and Membranes with an Outstanding Alkaline‐Membrane Fuel‐Cell Performance of 2.58 W cm−2 , 2020, Angewandte Chemie.
[11] H. Pu,et al. Multi-block poly(ether sulfone) for anion exchange membranes with long side chains densely terminated by piperidinium , 2020 .
[12] Yanhua Yu,et al. Piperidinium-Functionalized Poly(Vinylbenzyl Chloride) Cross-linked by Polybenzimidazole as an Anion Exchange Membrane with a Continuous Ionic Transport Pathway , 2020 .
[13] Fengxiang Zhang,et al. Partially fluorinated, multication cross-linked poly(arylene piperidinium) membranes with improved conductivity and reduced swelling for fuel cell application , 2020, Ionics.
[14] K. Geng,et al. Synthesis and properties of phosphonated polysulfones for durable high-temperature proton exchange membranes fuel cell , 2020 .
[15] A. Lai,et al. Comb-shaped fluorene-based poly(arylene ether sulfone nitrile) as anion exchange membrane , 2020 .
[16] Hong Zhu,et al. Chemically stable poly(meta-terphenyl piperidinium) with highly conductive side chain for alkaline fuel cell membranes , 2020 .
[17] G. Shafiullah,et al. Hydrogen production for energy: An overview , 2020 .
[18] Tae-Hyun Kim,et al. Hydrophobic-hydrophilic comb-type quaternary ammonium-functionalized SEBS copolymers for high performance anion exchange membranes , 2020 .
[19] Yurong Ren,et al. Facile Preparation of Anion-Exchange Membrane Based on Polystyrene-b-polybutadiene-b-polystyrene for the Application of Alkaline Fuel Cells , 2019 .
[20] Hong Zhu,et al. Controllable physical-crosslinking poly(arylene 6-azaspiro[5.5] undecanium) for long-lifetime anion exchange membrane applications , 2019, Journal of Membrane Science.
[21] L. Zhuang,et al. Hydrophobic Side-Chain Attached Polyarylether-Based Anion Exchange Membranes with Enhanced Alkaline Stability , 2019, ACS Applied Energy Materials.
[22] L. Zhuang,et al. Anion exchange membranes with "rigid-side-chain" symmetric piperazinium structures for fuel cell exceeding 1.2 W cm−2 at 60 °C , 2019, Journal of Power Sources.
[23] Hong Zhu,et al. Tunable multi-cations-crosslinked poly(arylene piperidinium)-based alkaline membranes with high ion conductivity and durability , 2019, Journal of Membrane Science.
[24] Cuihong Jin,et al. Highly durable and conductive poly(arylene piperidine) with a long heterocyclic ammonium side-chain for hydroxide exchange membranes , 2019, International Journal of Hydrogen Energy.
[25] Qian Yang,et al. Hydrophobic side chains to enhance hydroxide conductivity and physicochemical stabilities of side-chain-type polymer AEMs , 2019, Journal of Membrane Science.
[26] Zhengjin Yang,et al. Poly(phenylene oxide)-Based Ion-Exchange Membranes for Aqueous Organic Redox Flow Battery , 2019, Industrial & Engineering Chemistry Research.
[27] Thanh Huong Pham,et al. Tuning poly(arylene piperidinium) anion-exchange membranes by copolymerization, partial quaternization and crosslinking , 2019, Journal of Membrane Science.
[28] Brian P. Setzler,et al. Poly(aryl piperidinium) membranes and ionomers for hydroxide exchange membrane fuel cells , 2019, Nature Energy.
[29] Jong Kwan Kim,et al. High-performance anion-exchange membrane water electrolysis , 2019, Electrochimica Acta.
[30] L. Zhuang,et al. Sulfonated Nanobamboo Fiber-Reinforced Quaternary Ammonia Poly(ether ether ketone) Membranes for Alkaline Polymer Electrolyte Fuel Cells. , 2018, ACS applied materials & interfaces.
[31] L. Zhuang,et al. Alkaline polymer electrolyte fuel cells stably working at 80 °C , 2018, Journal of Power Sources.
[32] Erigene Bakangura,et al. Preparation and performance evaluation of novel alkaline stable anion exchange membranes , 2017 .
[33] Abbas Ali Saberi,et al. Recent advances in percolation theory and its applications , 2015, 1504.02898.
[34] C. Arges,et al. Two-dimensional NMR spectroscopy reveals cation-triggered backbone degradation in polysulfone-based anion exchange membranes , 2013, Proceedings of the National Academy of Sciences.
[35] Thanh Huong Pham,et al. Poly(arylene piperidinium) Hydroxide Ion Exchange Membranes: Synthesis, Alkaline Stability, and Conductivity , 2018 .