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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Three-dimensional multilevel porous thin graphite nanosuperstructures for Ni(OH)2-based energy storage devices
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Three-dimensional multilevel porous thin graphite nanosuperstructures for Ni(OH)2-based energy storage devices

机译:用于Ni(OH)2基储能装置的三维多层多孔薄石墨纳米超结构

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We report an innovative mechanism for the synthesis of 3-D multilevel porous graphite superstructures using strategically engineered Cu-Ni catalysts. The 3-D thin-graphite nanostructures with two levels of porosity were synthesized by using porous nickel-copper (Ni-Cu) catalysts—engineered from Ni foams via an electrodeposition/etching process. The as-grown graphite is 3-D, multilevel porous, freestanding, and flexible after selective etching of the catalysts. The graphite coated with thin nickel hydroxide nanoplates [Ni(OH)2] was applied as electrodes for alkaline batteries. The electrodes are binder-free and offer a remarkable discharge capacity of ~480 mA h g~(-1) at a rate of 1.5 A g~(-1). Compared to previous reports, they also exhibit excellent cyclability with 97.5% capacitance retention after 4000 cycles. The high performance of the electrodes of porous graphite/Ni(OH)2 could be attributed to the large specific surface area, excellent crystalline quality, controlled Ni(OH)2 nanocrystalline assemblies, and high electric conductivity. Overall, the reported mechanism for the synthesis of 3-D porous graphite is the first of its kind, which may potentially spur a new paradigm for manufacturing 3-D porous graphene/graphite materials for an array of energy storage applications.
机译:我们报告了使用策略性设计的Cu-Ni催化剂合成3-D多级多孔石墨超结构的创新机制。使用多孔镍-铜(Ni-Cu)催化剂合成了具有两个孔隙率的3-D纳米石墨纳米结构-镍泡沫是通过电沉积/蚀刻工艺设计的。所生长的石墨是选择性腐蚀催化剂后的3-D,多级多孔,独立且可弯曲的石墨。将涂覆有薄的氢氧化镍纳米板[Ni(OH)2]的石墨用作碱性电池的电极。电极不含粘合剂,并以1.5 A g〜(-1)的速率提供〜480 mA h g〜(-1)的显着放电容量。与以前的报告相比,它们还表现出出色的可循环性,在4000次循环后电容保持率为97.5%。多孔石墨/ Ni(OH)2电极的高性能归因于其大的比表面积,出色的结晶质量,可控的Ni(OH)2纳米晶体组件和高电导率。总体而言,所报道的合成3-D多孔石墨的机制尚属首次,它可能激发一种新的范式,用于制造一系列能量存储应用的3-D多孔石墨烯/石墨材料。

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