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Research Progress on Applications of Polyaniline (PANI) for Electrochemical Energy Storage and Conversion

机译:聚苯胺(PANI)在电化学储能和转化中的应用研究进展

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摘要

Conducting polyaniline (PANI) with high conductivity, ease of synthesis, high flexibility, low cost, environmental friendliness and unique redox properties has been extensively applied in electrochemical energy storage and conversion technologies including supercapacitors, rechargeable batteries and fuel cells. Pure PANI exhibits inferior stability as supercapacitive electrode, and can not meet the ever-increasing demand for more stable molecular structure, higher power/energy density and more N-active sites. The combination of PANI and other active materials like carbon materials, metal compounds and other conducting polymers (CPs) can make up for these disadvantages as supercapacitive electrode. As for rechargeable batteries and fuel cells, recent research related to PANI mainly focus on PANI modified composite electrodes and supported composite electrocatalysts respectively. In various PANI based composite structures, PANI usually acts as a conductive layer and network, and the resultant PANI based composites with various unique structures have demonstrated superior electrochemical performance in supercapacitors, rechargeable batteries and fuel cells due to the synergistic effect. Additionally, PANI derived N-doped carbon materials also have been widely used as metal-free electrocatalysts for fuel cells, which is also involved in this review. In the end, we give a brief outline of future advances and research directions on PANI.
机译:具有高电导率,易于合成,高柔性,低成本,环境友好和独特的氧化还原特性的导电聚苯胺(PANI)已广泛应用于电化学能量存储和转换技术,包括超级电容器,可充电电池和燃料电池。纯PANI作为超级电容电极表现出较差的稳定性,无法满足对更稳定的分子结构,更高的功率/能量密度和更多的N活性位点不断增长的需求。 PANI和其他活性材料(如碳材料,金属化合物和其他导电聚合物(CP))的组合可弥补作为超级电容电极的这些缺点。对于可再充电电池和燃料电池,有关PANI的最新研究主要集中在PANI改性的复合电极和负载型复合电催化剂上。在各种基于PANI的复合结构中,PANI通常充当导电层和网络,并且由于具有协同作用,所得的具有各种独特结构的基于PANI的复合材料在超级电容器,可充电电池和燃料电池中已显示出优异的电化学性能。另外,PANI衍生的N掺杂碳材料也已被广泛用作燃料电池的无金属电催化剂,该研究也涉及到这一点。最后,我们简要概述了PANI的未来发展和研究方向。

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