An In Situ Oxidative Polymerization Method to Synthesize Mesoporous Polypyrrole/MnO(2) Composites for Supercapacitors

一种原位氧化聚合法合成介孔聚吡咯/MnO(2)复合材料及其在超级电容器中的应用

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Abstract

Manganese dioxide (MnO(2)) shows great potential in the field of electrochemical performance. But its poor conductivity, easy dissolution in electrolytes and undesirable ionic accessibility hinder its application. The construction of mesoporous polypyrrole/manganese dioxide (PPy/MnO(2)) composites can effectively alleviate these problems. Herein, an in situ oxidative polymerization method is developed to synthesize mesoporous PPy/MnO(2) composites. In this method, Pluronic P123 and pyrrole monomers are co-assembled on the surface of MnO(2). MnO(2) is used as an oxidation initiator to polymerize pyrrole under acidic conditions and as a substrate for a uniform coating of PPy. The obtained composites, with a large electrochemical effective area, more reaction sites and good structural stability have better capacitor performance (182.8 F g(-1)), higher than MnO(2) (116.6 F g(-1)) at the same current density. This method provides a meaningful reference for the development of mesoporous PPy/MnO(2) supercapacitor materials.

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