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Electrochemical hydrogen storage performance of hierarchical Co metal flower-like microspheres

机译:钴金属花状微球的电化学储氢性能

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摘要

Hierarchical cobalt metal flower-like microsphere (Co-FM) was synthesized by a facile hydrothermal process, and its electrochemical hydrogen storage performance was investigated. The Co-FM was generated by the reduction of beta cobalt hydroxide [beta-Co(OH)(2)] platelets in the presence of a mild reducing agent without the use of any template or surfactant. The obtained sample was characterized by X-ray diffraction (XRD), field emission scanning electron microscopy (FE-SEM), high-resolution transmission electron microscopy (HR-TEM), and energy dispersive spectrometry (EDS). The XRD analysis reveals that this sample has a pure hexagonal close-packed (hcp) structure. The FE-SEM and HR-TEM observations indicate that the synthesized particles are flower-like microspheres with an average diameter of similar to 1.5 mu m, composed of individual Co metal platelets. The electrochemical hydrogen storage performance was investigated as the negative electrode for nickel-metal hydride (Ni-MH) battery in aqueous KOH solution. The electrochemical measurements demonstrated that this material showed better reversibility, higher hydrogen storage capacity, and higher rate dischargeability than the commercial Co metal powder with similar particle size (similar to 2 mu m) under atmospheric temperature and pressure. Its maximum discharge capacity was similar to 360 mA h g(-1) and remained 300 mA h g(-1) even after 100 cycles, and the capacity retention rate was similar to 83%. This significant electrochemical hydrogen storage performance can be attributed to its hierarchical architecture, which leads to increasing the surface area, reducing the diffusion pathway, and buffering the volume change during cycling. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过简便的水热法合成了钴金属花状微球(Co-FM),并对其电化学储氢性能进行了研究。 Co-FM是通过在温和的还原剂存在下不使用任何模板或表面活性剂的情况下还原β氢氧化钴[β-Co(OH)(2)]血小板而产生的。通过X射线衍射(XRD),场发射扫描电子显微镜(FE-SEM),高分辨率透射电子显微镜(HR-TEM)和能量分散光谱(EDS)对获得的样品进行表征。 XRD分析表明该样品具有纯六角密堆积(hcp)结构。 FE-SEM和HR-TEM观察表明,合成的颗粒是花状微球,平均直径接近1.5微米,由单个Co金属片组成。研究了在KOH水溶液中作为镍氢(Ni-MH)电池负极的电化学储氢性能。电化学测量表明,与在大气温度和压力下具有相似粒径(近似2微米)的市售Co金属粉末相比,该材料具有更好的可逆性,更高的储氢能力和更高的倍率放电能力。其最大放电容量类似于360 mA h g(-1),即使经过100个循环后仍保持300 mA h g(-1),容量保持率接近83%。这种显着的电化学氢存储性能可归因于其分层结构,从而导致增加表面积,减少扩散路径并缓冲循环过程中的体积变化。 (C)2016 Elsevier Ltd.保留所有权利。

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