首页> 外文会议>International Conference on Future Energy, Environment, and Materials >Electrochemical Hydrogen Storage Kinetics of La_(0.75-x) Zr_xMg_(0.25)Ni_(3.2)Co_(0.2)Al_(0.1) (x = 0-0.2) Alloys Prepared by Melt Spinning
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Electrochemical Hydrogen Storage Kinetics of La_(0.75-x) Zr_xMg_(0.25)Ni_(3.2)Co_(0.2)Al_(0.1) (x = 0-0.2) Alloys Prepared by Melt Spinning

机译:La_(0.75-x)Zr_xmg_(0.25)的电化学储氢动力学(0.25)Ni_(3.2)CO_(0.2)AL_(0.1)(0.1)(x = 0-0.2)通过熔融纺纱制备的合金

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The RE-Mg-Ni-based A2B7-type La_(0.75-x) Zr_xMg_(0.25)Ni_(3.2)Co_(0.2)Al_(0.1) (x = 0, 0.05, 0.1, 0.15, 0.2) electrode alloys were fabricated by casting and melt spinning. The influences of the melt spinning on the structures and the electrochemical hydrogen storage kinetics of the alloys were investigated. The structure characterized by XRD, SEM and HRTEM and the results reveal that the as-cast and spun alloys have a multiphase structure, composing of two main phases (La, Mg)2Ni7 and LaNi5 as well as a residual phase LaNi2. The as-spun Zr-free alloy displays an entire nanocrystalline structure, but a like amorphous structure is detected in the as-spun alloy substituted by Zr, suggesting that the substitution of Zr for La facilitate the amorphous formation. The melt spinning engenders different impact on the high rate discharge ability (HRD) of the Zr-free and Zr substitution alloys. As the spinning rate is enhanced from 0 (As-cast is defined as the spinning arte of 0 m/s) to 20 m/s, the HRD of the Zr-free (x = 0) alloy grows from 94.28% (0 m/s) to 95.15% (10 m/s) and then declines to 89.23% (20 m/s). And that of the Zr substitution (x = 0.15) alloy monotonously falls from 90.45% to 80.07%. Furthermore, the electrochemical impedance spectrum (EIS), the Tafel polarization curves and the potential-step measurements all indicate that the electrochemical kinetics first increases then decreases for the Zr-free alloy, but all of them always decline for the alloy substituted by Zr with the growing of spinning rate.
机译:基于RE-MG-NI的A2B7型LA_(0.75-X)ZR_XMG_(0.25)Ni_(3.2)CO_(0.2)AL_(0.1)(x = 0,0.05,0.1,0.15,0.2)电极合金通过铸造和熔化纺丝。研究了熔体纺丝对结构的结构和电化学储氢动力学的影响。其特征在于XRD,SEM和HRTEM的结构,结果表明,铸型和纺粘合金具有多相结构,由两个主要相(La,Mg)2Ni7和Lani5以及残留相Lani2组成。 SA-SPU Zr的合金显示整个纳米晶体结构,但在被Zr取代的AS-Spun合金中检测到类似的无定形结构,表明Zr的取代促进了无定形形成。熔融纺纱针对无Zr和Zr取代合金的高速率放电能力(HRD)产生不同的影响。随着纺丝率从0(以0 m / s的纺纱定义为0m / s)至20m / s的纺丝率,无zr的HRD(x = 0)合金的HRD从94.28%增加(0米/ s)95.15%(10米/秒),然后下降至89.23%(20米/秒)。并且Zr取代(X = 0.15)合金单调的90.45%至80.07%。此外,电化学阻抗谱(EIS),Tafel偏振曲线和电位步骤测量都表明电化学动力学首先增加,然后对无Zr的合金降低,但所有这些都总是对Zr取代的合金的均呈下降纺纱率的不断增长。

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