Qianyu Xiao , Chengyun Yuan , Pei Cheng , Yinghan Wang , Jiayu Wang
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引用次数: 0
Abstract
A hydrophilic cross-linked proton exchange membrane was constructed in a Nafion matrix based on azide polysulfone containing sulfonic acid (SPSU-N3) and alkynyl substituted polyvinyl alcohol (APVA) through azide–alkyne click chemistry reaction. Arising from the increased polarity of the cross-linked network and high cross-linking density, the alcohol barrier performance of the Nafion membrane was greatly improved. The methanol permeability of the Nafion/cross-linked SPSU-N3 and APVA membrane decreases to 1.86 × 10−7 cm2 s−1, which is about 88% lower than that of the recast Nafion membrane, and the proton selectivity is 18.5 × 104 S s cm−3.
以含磺酸叠氮化物聚砜(SPSU-N3)和炔基取代聚乙烯醇(APVA)为原料,通过叠氮化物-炔基键合化学反应,在Nafion基体上构建亲水性交联质子交换膜。由于交联网络极性的增加和交联密度的提高,Nafion膜的醇屏障性能得到了很大的提高。Nafion/交联SPSU-N3和APVA膜的甲醇渗透率降至1.86×10-7 cm2/s,比重铸Nafion膜降低约88%,质子选择性为18.5×104 ss /cm3。
期刊介绍:
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