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Characterization of SPEEK/Y2O3 proton exchange membrane treated with high magnetic field

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【作者】 童菊英郭强谭孝林李夏李丹董云凤

【Author】 TONG Juying1,2, GUO Qiang 1, TAN Xiaolin 1, LI Xia 1, LI Dan 1, DONG Yunfeng 1 (1. School of Materials Science and Engineering, Shanghai University, Shanghai 201800, China; 2. School of Wenling, Zhejiang TV University, Wenling 317500, China)

【机构】 School of Materials Science and Engineering, Shanghai UniversitySchool of Wenling, Zhejiang TV University

【摘要】 The membranes of sulfonated poly(etheretherketone) of 48.3% sulfonation degree doped with Y2O3 were prepared, and then treated with parallel high magnetic field of 6 and 12 T at 120 oC for 4 h, respectively. The small-angle X-ray scattering revealed that the struc- ture of the composite membranes would be changed by high magnetic field treatment. The cross-section morphology of the composite membranes by a scanning electron microscope showed that the Y2O3 could be dispersed evenly in the composite membranes which were relatively smooth and compact but formed small conglomeration with increasing Y2O3 content and treating high magnetic field. The water uptake of membranes would be reduced with Y2O3 content increasing, but not be modified by the treatment of high magnetic field. The proton conductivity of membranes would be increased with temperature rising from 20 to 60 oC, and improved under high magnetic field, which could all exceed 10-2 S/cm at 75% relative humidity, but decrease with doping content of Y2O3 from 2 wt.% to 8 wt.%. The methanol permeability of the composite membranes would be decreased with Y2O3 content increasing and slightly reduced after high magnetic field treatment.

【Abstract】 The membranes of sulfonated poly(etheretherketone) of 48.3% sulfonation degree doped with Y2O3 were prepared, and then treated with parallel high magnetic field of 6 and 12 T at 120 oC for 4 h, respectively. The small-angle X-ray scattering revealed that the struc- ture of the composite membranes would be changed by high magnetic field treatment. The cross-section morphology of the composite membranes by a scanning electron microscope showed that the Y2O3 could be dispersed evenly in the composite membranes which were relatively smooth and compact but formed small conglomeration with increasing Y2O3 content and treating high magnetic field. The water uptake of membranes would be reduced with Y2O3 content increasing, but not be modified by the treatment of high magnetic field. The proton conductivity of membranes would be increased with temperature rising from 20 to 60 oC, and improved under high magnetic field, which could all exceed 10–2 S/cm at 75% relative humidity, but decrease with doping content of Y2O3 from 2 wt.% to 8 wt.%. The methanol permeability of the composite membranes would be decreased with Y2O3 content increasing and slightly reduced after high magnetic field treatment.

【基金】 Project supported by the National Natural Science Foundation of China (50975167);Shanghai Leading Academic Discipline Project (S30107);Wenling Science and Technology Bureau ([2009]29-01-31) for continuing support on this research
  • 【文献出处】 Journal of Rare Earths ,稀土学报(英文版) , 编辑部邮箱 ,2011年06期
  • 【分类号】TG146.452
  • 【被引频次】3
  • 【下载频次】54
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