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A new long-side-chain sulfonated poly(2,6-dimethyl-1,4-phenylene oxide)(PPO)/polybenzimidazole(PBI)amphoteric membrane for vanadium redox flow battery 被引量:3
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作者 Bowen Jiang Lei Hu +5 位作者 Xiaoming Yan Jiahui Sun Li Gao Yan Dai Xuehua Ruan Gaohong He 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2020年第7期1918-1924,共7页
A new amphoteric membrane was prepared by blending long-side-chain sulfonated poly(2,6-dimethyl-1,4-phenylene oxide)(S-L-PPO)and polybenzimidazole(PBI)for vanadium redox flow battery(VRFB)application.An acid-base pair... A new amphoteric membrane was prepared by blending long-side-chain sulfonated poly(2,6-dimethyl-1,4-phenylene oxide)(S-L-PPO)and polybenzimidazole(PBI)for vanadium redox flow battery(VRFB)application.An acid-base pair structure formed between the imidazole of PBI and sulfonic acid of S-L-PPO resulted in lowered swelling ratio.It favors to reduce the vanadium permeation.While,the increased sulfonic acid concentration ensured that proton conductivity was still at a high level.As a result,a better balance between the vanadium ion permeation(6.1×10^-9 cm^2·s^-1)and proton conductivity(50.8 m S·cm^-1)in the S-L-PPO/PBI-10%membrane was achieved.The VRFB performance with S-L-PPO/PBI-10%membrane exhibited an EE of 82.7%,which was higher than those of pristine S-L-PPO(81.8%)and Nafion 212(78.0%)at 120 m A·cm^-2.In addition,the S-LPPO/PBI-10%membrane had a much longer self-discharge duration time(142 h)than that of Nafion 212(23 h). 展开更多
关键词 Amphoteric membrane poly(2 6-dimethyl-1 4-phenylene oxide)(PPO) Vanadium redox flow battery polybenzimidazole(PBI) Long side chain
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Ion exchange membranes from poly(2,6-dimethyl-1,4-phenylene oxide) and related applications 被引量:3
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作者 Jiahui Zhou Peipei Zuo +2 位作者 Yahua Liu Zhengjin Yang Tongwen Xu 《Science China Chemistry》 SCIE EI CAS CSCD 2018年第9期1062-1087,共26页
Ion exchange membranes(IEMs) play a significant role in fields of energy and environment, for instance fuel cells, diffusion dialysis, electrodialysis, etc. The limited choice of commercially available IEMs has produc... Ion exchange membranes(IEMs) play a significant role in fields of energy and environment, for instance fuel cells, diffusion dialysis, electrodialysis, etc. The limited choice of commercially available IEMs has produced a strong demand of fabricating IEMs with improved properties via facile synthetic strategies over the past two decades. Poly(phenylene oxide)(PPO) is considered as a promising polymeric material for constructing practical IEMs, due to its advantages of good physicochemical properties, low manufacturing cost and easy post functionalization. In this review, we present the accumulated efforts in synthetic strategies towards diverse types of PPO-based IEMs. Relation between polymer structures and the resulted features is discussed in detail. Besides, applying IEMs from PPO and its derivatives in fuel cell, diffusion dialysis and electrodialysis is summarized and commented. 展开更多
关键词 poly2 6-dimethyl-1 4-phenylene oxide PPO ion exchange membrane MODIFICATION application
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PPO/PET共混物的相容性研究 被引量:1
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作者 潘利华 梁伯润 《中国纺织大学学报》 CSCD 1993年第4期27-32,共6页
本文采用 DSC、DMA 以及 PCM 等测试技术对 PPO/PET 共混物体系进行了相容性及相形态的研究。结果表明:PPO/PET 共混物是一热力学不相容的体系。共混物的相分离程度随着热处理温度的升高而加大,其热转变温度、动态力学转变点及相形态均... 本文采用 DSC、DMA 以及 PCM 等测试技术对 PPO/PET 共混物体系进行了相容性及相形态的研究。结果表明:PPO/PET 共混物是一热力学不相容的体系。共混物的相分离程度随着热处理温度的升高而加大,其热转变温度、动态力学转变点及相形态均具有组成依赖性。增容剂 GMS 的加入改善了体系的相容程度。随着 GMS 含量的增加,其相容程度提高;分散相尺寸因增容剂的加入而变小,界面层的结合也得到改善。 展开更多
关键词 相容性 共混物 PPO PET
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