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Synthesis of Ni/Graphene Nanosheets via Electron Beam Irradiation and Their Enhanced Electrochemical Hydrogen Storage Properties

机译:电子束辐照制备Ni /石墨烯纳米片及其增强的电化学储氢性能

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A nanostructured Ni(OH)(2)/graphene oxide (GO) hybrid was fabricated via the controlled reassembly of exfoliated GO with nickel hydroxide to form a delaminated structure. To examine the effect of electron beam irradiation on the hybrid material, the obtained Ni(OH)(2)/GO was exposed to the electron beam, and the total doses of the electron beam were varied from 150 to 250 kGy. The electron-beam-irradiated hybrid was reduced to fabricate a new nanostructured material in which nickel nanoparticles were homogeneously deposited onto the graphene nanosheets (GNS). According to the transmission electron microscopy analysis, a large number of defect sites could be developed after the electron beam treatments. The electrochemical hydrogen storage property (approximately 170 mAh/g) of the hybrid sample after the electron beam treatment was determined to be much superior to that of the GNS (approximately 20 mAh/g), demonstrating that this synthetic methodology via electron beam bombardment could be extended to the development of new nanostructured materials with enhanced hydrogen storage properties.
机译:纳米结构的Ni(OH)(2)/氧化石墨烯(GO)杂化物是通过将剥落的GO与氢氧化镍进行可控的重新组装以形成分层结构而制成的。为了检查电子束辐照对杂化材料的影响,将获得的Ni(OH)(2)/ GO暴露于电子束,电子束的总剂量在150至250 kGy之间变化。还原电子束辐照的杂化体以制造一种新的纳米结构材料,其中镍纳米颗粒均匀地沉积在石墨烯纳米片(GNS)上。根据透射电子显微镜分析,在电子束处理后可形成大量缺陷部位。经测定,杂化样品在电子束处理后的电化学储氢性能(约170 mAh / g)要比GNS的电化学储氢性能(约20 mAh / g)好得多,这表明通过电子束轰击的这种合成方法可以扩展到具有增强的储氢性能的新型纳米结构材料的开发。

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