Yang Huabin, Zhang Haichang, Mo Wei, Zhou Zuoxiang
Institute of New Energy Material Chemistry, Nankai University, Tianjin 300071, China.
J Phys Chem B. 2006 Dec 28;110(51):25769-74. doi: 10.1021/jp0647838.
Mg1.8La0.2Ni hydrogen storage alloy was ball-milled with Ni powder, leading to the formation of a nanocrystalline and amorphous microstructure with particle sizes less than 50 nm in diameter. Each sample was examined by transmission electron microscopy (TEM), energy-dispersive spectroscopy (EDS), and X-ray diffraction (XRD). This structure was beneficial for the reduction of electrochemical impedance, as well as significant improvement of its discharge capacity, cycle life, and rate capability for electrochemical hydrogen storage in an alkaline solution. When the molar ratio (x) of Ni over Mg1.8La0.2Ni was equal to 2, the dehydriding capacity reached 2.55 wt % from electrochemical pressure-temperature isotherms (P-C-T). It was in good agreement with its initial discharge capacity, 716 mAh/[g of (Mg1.8La0.2Ni)], observed from the electrochemical charge and discharge process. After 50 cycles, its discharge capacity still reached 381 mAh/[g of (Mg1.8La0.2Ni)]. Further results showed that this composite had a promising high rate capability. At the current density of 1200 mA/g its discharge capacity reached 48% of its initial capacity.
将Mg1.8La0.2Ni储氢合金与镍粉进行球磨,形成了直径小于50nm的纳米晶和非晶微观结构。通过透射电子显微镜(TEM)、能量色散光谱(EDS)和X射线衍射(XRD)对每个样品进行了检测。这种结构有利于降低电化学阻抗,同时显著提高其在碱性溶液中的放电容量、循环寿命和电化学储氢的倍率性能。当Ni与Mg1.8La0.2Ni的摩尔比(x)等于2时,根据电化学压力-温度等温线(P-C-T),脱氢容量达到2.55 wt%。这与其在电化学充放电过程中观察到的初始放电容量716 mA·h/[g(Mg1.8La0.2Ni)]非常吻合。经过50次循环后,其放电容量仍达到381 mA·h/[g(Mg1.8La0.2Ni)]。进一步的结果表明,这种复合材料具有良好的高倍率性能。在1200 mA/g的电流密度下,其放电容量达到初始容量的48%。