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The La0.8Mg0.2Ni2.4Mn0.10Co0.55Al0.10 alloy was prepared by induction melting. The structural and morphological characterizations were performed by means of X-ray powder diffraction (XRD) and scanning electron microscopy (SEM). The electrochemical measurements were performed using LAND and CH/660b electrochemical workstation. The main phases of the alloy were LaNi5 and (La,Mg)Ni3. After annealing, the maximum discharge capacity, cycle stability and high rate dischargeability (HRD) were improved obviously. The maximum discharge capacity reached 373.80 mAh/g (T=1173 K), the C100/Cmax(%) was 72.63% (T=1173 K), and the value of HRD reached 51.8% at a discharge current density of 1150 mA/g (T=1173 K). The cyclic voltammetry (CV) and potentiodynamic polarization were also studied. 相似文献
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钒酸锂(Li1+xV3O8)具有比容量大的优点,可用作传统锂离子电池正极材料及水溶液锂离子电池负极材料,是一种重要的锂离子电池活性材料。Li1+xV3O8作为传统锂离子电池正极材料已被广泛研究,近年来Li1+xV3O8作为水溶液锂离子电池负极材料的研究备受瞩目,成为了锂离子电池研究领域的热点与前沿。本文综述了Li1+xV3O8作为传统锂离子电池正极材料的研究现状,从结构与充放电机理、合成方法及改性等方面进行了讨论,此外,综述了Li1+xV3O8作为水溶液锂离子电池负极材料的研究现状并指出了其发展趋势。 相似文献
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Mg(AlH4)2是一种理想的储氢材料,理论储氢容量高达7.5%(质量分数)。然而较高的起始放氢温度在很大程度上制约了Mg(AlH4)2的应用。正交试验设计方法能够在较少的试验次数中掌握可靠的实验数据以及各因素之间的内在联系从而确定最优的实验方案,特别适用与多因素多水平的实验条件研究。利用高能球磨法成功地制备了Mg(AlH4)2,并将NaAlH4和TiF3引入到该体系中。利用傅里叶红外转换测试仪(FTIR)对产物的结构进行表征,程序控温脱附(TPD)对产物的放氢温度和放氢量进行测定。此外,采用三因素三水平的L9(33)正交试验法,以Mg(AlH4)2的起始放氢温度为指标,以NaAlH4的添加量、TiF3的添加量和球磨间隔时间为因素,同时考察以上3项重要因素对降低Mg(AlH4)2起始放氢温度的影响。通过对正交试验的系统分析发现,NaAlH4的添加量对降低Mg(AlH4)2的起始放氢温度影响最显著,其次为TiF3的添加量,最后为球磨间隔时间。得到最佳试验条件,在最佳条件下Mg(AlH4)2的起始放氢温度仅为72℃,与未添加的相比放氢温度降低了67℃,放氢性能明显提高。 相似文献
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Al和Ti对Mg2Ni结构中部分Mg的取代,得到与Mg2Ni晶体结构不同的新型合金.多晶X射线结构分析表明,其化学式为Mg3MNi2(M=Ti,Al),立方晶系,空间群Fd3m, Z=16,48个Mg坐落在48(f),16个 M(M=Al, Ti)坐落在16(d)位,32个Ni坐落在32(e)位,Mg3AlNi2的晶胞参数a=1.15474(2)nm, Mg3TiNi2的a=1.16178(2)nm.与Mg2Ni相比,Mg3MNi2合金的晶体密度更大,Mg-Ni键长更长,吸放氢温度降低,循环寿命延长. 相似文献
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含锆镁基储氢合金的合成及其电化学性能 总被引:3,自引:0,他引:3
用固相扩散法合成了Mg2-xZrxNi (x=0, 0.2, 0.3, 0.4, 0.5, 0.6)系列合金. XRD结构分析表明 主相仍为Mg2Ni; Zr替代Mg使合金的微晶结构发生了改变, 趋于非晶化; 添加Zr的合金的容量比由扩散法合成的合金的容量有所提高; 合金中添加Zr, 提高了电极的放电容量, 增大了放电平台; 特别是Zr 对六方晶系Mg2Ni合金结构中Mg的部分取代大幅度提高了电极的循环寿命, 未经任何处理的 Mg1.4Zr0.6Ni合金电极经25个循环后, 放电容量仅衰减4.11%, 表明添加Zr对提高合金的循环寿命具有重要的作用. 相似文献
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The La0.8Mg0.2Ni2.4Mn0.10Co0.55Al0.10 alloy was prepared by induction melting. The structural and morphological characterizations were performed by means of X-ray powder diffraction (XRD) and scanning electron microscopy (SEM). The electrochemical measurements were performed using LAND and CHI 660b electrochemical workstation. The main phases of the alloy were LaNi5 and (La,Mg)Ni3. After annealing, the maximum discharge capacity, cycle stability and high rate dischargeability (HRD) were improved obviously. The maximum discharge capacity reached 373.80 mAh/g (T=1173 K), the C100/Cmax(%) was 72.63% (T=1173 K), and the value of HRD reached 51.8% at a discharge current density of 1150 mA/g (T=1173 K). The cyclic voltammetry (CV) and potentiodynamic polarization were also studied. 相似文献