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Oriented MOF-polymer Composite Nanofiber Membranes for High Proton Conductivity at High Temperature and Anhydrous Condition

机译:以高温和无水状况为导向的MOF-聚合物复合纳米纤维膜,高温电导率

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The novel oriented electrospun nanofiber membrane composed of MOFs and SPPESK has been synthesized for proton exchange membrane fuel cell operating at high temperature and anhydrous conditions. It is clear that the oriented nanofiber membrane displays the higher proton conductivity than that of the disordered nanofiber membrane or the membrane prepared by conventional solvent-casting method (without nanofibers). Nanofibers within the membranes are significantly oriented. The proton conductivity of the oriented nanofiber membrane can reach up to (8.2 ± 0.16) × 10?2?S cm?1 at 160°C under anhydrous condition for the highly orientation of nanofibers. Moreover, the oxidative stability and resistance of methanol permeability of the nanofibers membrane are obviously improved with an increase in orientation of nanofibers. The observed methanol permeability of 0.707 × 10?7?cm2 s?1 is about 6% of Nafion-115. Consequently, orientated nanofibers membrane is proved to be a promising material as the proton exchange membrane for potential application in direct methanol fuel cells.
机译:通过在高温和无水条件下操作的质子交换膜燃料电池,合成了由MOF和SPPESK组成的新型面向的电纺纳米纤维膜。显然,取向的纳米纤维膜显示出比常规溶剂浇铸方法(不含纳米纤维)制备的无序纳米纤维膜或膜的质子电导率越高。膜内的纳米纤维是显着的导向。取向的纳米纤维膜的质子电导率可以在160℃下达到(8.2±0.16)×10 β1/4/ scm 1 / scm>,以便高度纳米纤维的方向。此外,纳米纤维膜的甲醇渗透性的氧化稳定性和耐药性随着纳米纤维的取向而显然得到改善。观察到的甲醇渗透率为0.707×10 7 - 7 Δcm 2 s -1/pr +Δ1是Nafion-115的6%。因此,总所示的纳米纤维膜被证明是具有质子交换膜的有希望的材料,用于潜在应用于直接甲醇燃料电池中。

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