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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Organometallic-Derived Carbon (ODC)-Metal Nano-Oxide Composites as Improved Electrode Materials for Supercapacitors
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Organometallic-Derived Carbon (ODC)-Metal Nano-Oxide Composites as Improved Electrode Materials for Supercapacitors

机译:有机金属衍生的碳(ODC)纳米氧化物复合材料作为超级电容器的改进电极材料

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摘要

In the search for the new generation of electrochemical energy storage materials, a novel and straightforward synthetic route for porous carbons and metal oxide nanoparticle composites based on the chlorination of the organometallic compounds Ni(C5H5)(2) and Mn(C5H7O2)(2) at moderate temperatures, followed by hydro thermal treatment, has been developed. Electrochemical measurements in a three-electrode configuration show that, in both composites NiO@ODC and Mn3O4@ODC, a synergistic effect between the capacitive and pseudocapacitive energy storage mechanisms is observed, thereby improving their electrochemical performance vs pure carbon materials. Electrochemical evaluation of symmetric cells gave gravimetric capacitances of 124 and 130 F g(-1) for NiO@ODC and Mn3O4@ODC, respectively. However, the porous structure of the carbon matrix and the higher conductivity of Mn3O4, together, were found to be responsible for the superior electrochemical performance of Mn3O4@ODC.
机译:在寻找新一代的电化学储能材料,基于有机金属化合物Ni(C5H5)(2)和Mn(C5H7O2)(2)的氯化基于有机金属化合物的氯化(C5H7O2)(2)的多孔碳和金属氧化物纳米颗粒复合材料 在适度的温度下,已经开发出水力热处理。 三电极配置中的电化学测量表明,在复合材料NIO @ ODC和MN3O4 @ ODC中,观察到电容性和假性能量存储机构之间的协同效应,从而改善其电化学性能与纯碳材料。 对称电池的电化学评估分别为NIO @ ODC和MN3O4 @ ODC分别给出了124和130V(-1)的重量电容。 然而,发现碳基质的多孔结构和Mn3O4的较高导电性,并在一起负责MN3O4 @ ODC的优异电化学性能。

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