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Metal ions addition as interfacial mediators toward improving the electrochemical performance of PANI-rGO aerogels

机译:金属离子添加作为界面介质,旨在提高Pani-Rgo Aerogels的电化学性能

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We report a simple and general strategy to optimize the composite of reduced graphene oxide (rGO) and polyaniline (PANI) via introducing a small quantity of divalent metal ions M (M = Ni2+, Co2+, Cu2+, Mn2+) as mediators. This simple approach can not only inhibit the aggregation of both the graphene sheets and the PANI nanoparticles, yielding a uniform PANI-rGO morphology with increased specific surface area, but also strengthen the utilization of the good conductivity of rGO, leading to reduced charge transfer resistance. The metal ions modified binary PANI-rGO aerogels (P-GA-Ms) exhibit all fairly high specific charges or capacities of 271 (Ni2+), 211(Co2+), 200 (Cu2+) and 181 mA h . g(-1) (Mn2+), at 1 A g(-1) in a three-electrode system, with an average retention of 93% over 10000 cycles of charge-discharge at 3 A g(-1). Additionally, as a proof of generality, a ternary system of MoS2-PANI-GA with additive Ni2+ showing better electrochemical performance than that without Ni2+ is demonstrated as well. This study provides a rational way on improving the specific charges or capacities of GA-based composites by adopting metal ions as mediators. (C) 2018 Elsevier Ltd. All rights reserved.
机译:我们通过将少量二价金属离子M(m = Ni2 +,CO 2 +,Cu2 +,MN2 +,Cu2 +,MN2 +)作为介质来报告优化石墨烯(RGO)和聚苯胺(PANI)和聚苯胺(PANI)的复合物的简单致策略。这种简单的方法不仅可以抑制石墨烯片和Pani纳米颗粒的聚集,产生均匀的Pani-rgo形态,并且还强化了RGO的良好导电性的利用,导致电荷转移阻力降低。金属离子改性二元胰岛rgo气凝胶(P-GA-MS)表现出所有相当高的特定电荷或271(Ni2 +),211(CO2 +),200(CU2 +)和181mA H的容量。在三个电极系统中,在1Ag(-1)中的G(-1)(MN2 +),平均保持在3A(-1)的电荷放电超过10000循环。另外,作为一般性的证据,也具有添加剂Ni2 +的MOS2-PANI-GA的三元系统,显示比没有NI2 +的更好的电化学性能。该研究通过采用金属离子作为介质,提供了改善Ga基复合材料的特定电荷或能力的合理方法。 (c)2018年elestvier有限公司保留所有权利。

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