Synthesis of NiMoO4 nanosheets on graphene sheets as advanced supercapacitor electrode materials

Synthesis of NiMoO4 nanosheets on graphene sheets as advanced supercapacitor electrode materials
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石墨烯片上合成 NiMoO4 纳米片作为先进超级电容器电极材料

DOI:
10.1016/j.matlet.2016.08.012
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发表时间:
2016-12
期刊:
影响因子:
3
通讯作者:
Sun Ming
Sun Ming
中科院分区:
材料科学3区
文献类型:
--
作者:
Li Yongfeng;Jian Jianming;Xiao Liangjun;Wang Hui;Yu Lin;Cheng Gao;Zhou Junli;Sun Ming

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通过简便的水热法合成了在还原氧化石墨烯片 (NiMoO4NS/rGO) 复合材料上生长的结晶 NiMoO4 纳米片。 “片层”纳米结构相互互连,在复合材料中形成3D网络结构,当复合材料用作超级电容器电极材料时,可以为电子和离子的快速传输提供大的表面积和丰富的介孔。电化学测量表明,NiMoO4NS/rGO 复合材料在 1 A g−1 时表现出 1888 F g−1 的巨大值,并且在 10 A g−1 时仍保持高达 1271 F g−1 的值。此外,在剩余的2300个放电循环中,电激活过程后复合材料的电容损失仅为5.1%。
Crystalline NiMoO4nanosheets grown on reduced graphene oxide sheets (NiMoO4NS/rGO) composite was synthesized by a facile hydrothermal method. The “sheet on sheet” nanostructures are interconnected each other to form a 3D network structure in the composite, which can provide large surface area and abundant mesopores for the rapid electrons and ions transportation while the composite is used as supercapacitor electrode material. Electrochemical measurements show that NiMoO4NS/rGO composite exhibits a great value of 1888 F g−1at 1 A g−1, and still remains as high as 1271 F g−1at 10 A g−1. Moreover, the capacitance loss of the composite after the electro-activation process is only 5.1% during the rest 2300 discharge cycles.
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发表时间: 1999-03-01
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