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首页> 外文期刊>Electrochimica Acta >A novel three-dimensional graphene for remarkable performance of electrochemical energy storage
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A novel three-dimensional graphene for remarkable performance of electrochemical energy storage

机译:一种新型三维石墨烯,用于显着性能的电化学能量存储

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摘要

AbstractThree-Dimensional graphene (3D-G) material is regarded as an excellent carbon material, which reveals cross-linked porous structure, high specific surface area, strong mechanical strength and high conductivity inheriting from the graphene. In this work, we fabricate the novel 3D-G based materials by decoration of sodium citrate (SC) for supercapacitor and lithium ion batteries (LIBs) applications. SC with abundant functional groups and short carbon chain can ensure the interface between graphene sheets or between graphene and other composite materials, lead to shorter diffusion path for ions transportation. Owing to the large surface area and pore volume, 3D-G (SC) shows outstanding specific capacitance (301?F?g?1) when it is applied in supercapacitors. Besides that, 3D-G (SC) compounds with Fe3O4particles and 3D-G@Fe3O4(SC) are applied in LIBs. The 3D-G@Fe3O4(SC) has a higher discharge capacity (1310.6?mAh?g?1) than 3D-G@Fe3O4(1270?mAh?g?1) at 0.1?C, and it even increase to an excellent capacity (1550?mAh?g?1) after 100 cycles. Moreover, 3D-G@Fe3O4(SC) shows excellent cycling stability that specific capacity retains 1031?mAh?g?1after 1000 cycles. This work may extend a novel approach to prepare 3D-G electrode material for efficient storage devices.]]>
机译:<![CDATA [ 抽象 三维石墨烯(3d-g)材料被认为是优异的碳材料,显示交联多孔结构,高比表面积,强机械强度和从石墨烯继承的高导电性。在这项工作中,我们通过针对超级电容器和锂离子电池(LIBS)应用的柠檬酸钠(SC)装饰来制造新的3D-G基材料。 SC具有丰富的官能团和短碳链可以确保石墨烯片或石墨烯和其他复合材料之间的界面,导致离子输送的较短扩散路径。由于大表面积和孔隙体积,3D-G(SC)显示出突出的特定电容(301〜F?G ?1 )超级电容器。除此之外,3D-G(SC)化合物与FE 3 O 4 粒子和3D -g @ fe 3 o 4 (sc)在libs中应用。 3D-G @ FE 3 O 4 (SC)具有更高的放电容量( 1310.6?mah?g ?1 )而不是3d-g @ fe 3 o 4 (1270?MAH?G ?1 ),0.1?c,甚至增加到良好的容量(1550?MAH?G ?1 )后100个循环。此外,3D-G @ FE 3 O 4 (SC)显示出优异的循环稳定性具体容量保留1031?MAH?G ?1 1000次循环后。这项工作可以扩展一种新的方法来准备3D-G电极材料,用于高效存储设备。 ]]>

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