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Comparative structural and electrochemical study of high density spherical and non-spherical Ni(OH)2 as cathode materials for Ni\u2013metal hydride batteries

机译:Ni \ u2013金属氢化物电池正极材料高密度球形和非球形Ni(OH)2的比较结构和电化学研究

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摘要

In this paper we compare the behavior of non-spherical and spherical Beta-Ni(OH)2 as cathode materials for Ni\u2013MH batteries in an attempt to explore the effect of microstructure and surface properties of Beta-Ni(OH)2 on their electrochemical performances. Non-spherical Beta-Ni(OH)2 powders with a high-density are synthesized using a simple polyacrylamide (PAM) assisted two-step drying method. X-ray diffraction (XRD), infrared spectroscopy (IR), scanning electron microscopy (SEM), thermogravimetric/differential thermal analysis (TG\u2013DTA), Brunauer\u2013Emmett\u2013Teller (BET) testing, laser particle size analysis, and tap-density testing are used to characterize the physical properties of the synthesized products. Electrochemical characterization, including cyclic voltammetry (CV), electrochemical impedance spectroscopy (EIS), and a charge/discharge test, is also performed. The results show that the non-spherical Beta-Ni(OH)2 materials exhibit an irregular tabular shape and a dense solid structure, which contains many overlapped sheet nano crystalline grains, and have a high density of structural disorder and a large specific surface area. Compared with the spherical Beta-Ni(OH)2, the non-spherical Beta-Ni(OH)2 materials have an enhanced discharge capacity, higher discharge potential plateau and superior cycle stability. This performance improvement can be attributable to a higher proton diffusion coefficient (4.26\ud710\u22129 cm2 s\u22121), better reaction reversibility, and lower electrochemical impedance of the synthesized material.
机译:在本文中,我们比较了非球形和球形β-Ni(OH)2作为Ni \ u2013MH电池正极材料的行为,以试图探索β-Ni(OH)2的微观结构和表面性质对其的影响电化学性能。使用简单的聚丙烯酰胺(PAM)辅助两步干燥方法合成了高密度的非球形Beta-Ni(OH)2粉末。 X射线衍射(XRD),红外光谱(IR),扫描电子显微镜(SEM),热重/差热分析(​​TG \ u2013DTA),Brunauer \ u2013Emmett \ u2013Teller(BET)测试,激光粒度分析和Tap-密度测试用于表征合成产物的物理性质。还进行了电化学表征,包括循环伏安法(CV),电化学阻抗谱(EIS)和充电/放电测试。结果表明,非球形β-Ni(OH)2材料具有不规则的板状形状和致密的固体结构,其中包含许多重叠的片状纳米晶粒,并且具有高结构紊乱密度和大比表面积。 。与球形Beta-Ni(OH)2相比,非球形Beta-Ni(OH)2材料具有增强的放电容量,更高的放电电势平稳性和优异的循环稳定性。这种性能的提高可归因于更高的质子扩散系数(4.26 \ ud710 \ u22129 cm2 s \ u22121),更好的反应可逆性和合成材料的较低电化学阻抗。

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