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高比容量镍氢电池的制备及电化学性能

机译:高比容量镍氢电池的制备及电化学性能

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Cylindrical nickel metal hydride (Ni-MH) battery with high specific volume capacity was prepared by using the oxyhydroxide Ni(OH)2 and AB5 type hydrogen storage alloy and adjusting the designing parameters of positive and negative electrodes. The oxyhydroxide Ni(OH)2 was synthesized by oxidizing spherical β-Ni(OH)2 with chemical method. The X-ray diffraction (XRD) patterns and the Fourier transform infrared (FT-IR) spectra indicated that γ-NiOOH was formed on the oxyhydroxide Ni(OH)2 powders, and some H2O molecules were inserted into their crystal lattice spacing. The battery capacity could not be improved when the oxyhydroxide Ni(OH)2 sample was directly used as the positive active materials. However, based on the conductance and residual capacity of the oxyhydroxide Ni(OH)2 powders, AA size Ni-MH battery with 2560 mA·h capacity and 407 W·h·L specific volume energy at 0.2C was obtained by using the commercial spherical β-Ni(OH)2 and AB5-type hydrogen-storage alloy powders as the active materials when 10% mass amount of the oxyhydroxide Ni(OH)2 with 2.50 valence was added to the positive active materials and subsequently the battery designing parameters were adjusted as well. The as-prepared battery showed 70% initial capacity after 80 cycles at 0.5C. The possibility for adjusting the capacity ratio of positive and negative electrodes from 1 : 1.35 to 1 : 1.22 was demonstrated preliminarily. It is considered the as-prepared battery can meet the requirement of some special portable electrical instruments.
机译:通过使用羟基氧化物Ni(OH)2和AB5型储氢合金并调节正极和负电极的设计参数,制备具有高比体积容量的圆柱形金属氢化物(Ni-MH)电池。通过用化学方法氧化球形β-Ni(OH)2来合成羟基氧化钠Ni(OH)2。 X射线衍射(XRD)图案和傅里叶变换红外(FT-IR)光谱表明,在羟基氧化物Ni(OH)2粉末上形成γ-NiOOH,将一些H2O分子插入其晶格间距中。当羟基氧化物Ni(OH)2样品直接用作阳性活性材料时,电池容量无法改善。然而,根据羟基氧化物Ni(OH)2粉末的电导和残留能力,通过使用商业商业,获得了具有2560mA·H容量和407W·H·L特异性体积能的AA尺寸的Ni-MH电池。当向阳性活性物质中加入10%质量量的羟基氧化物Ni(OH)2时,球形β-Ni(OH)2和AB5型储氢合金粉末作为活性材料,并将其加入到阳性活性物质中,随后电池设计参数还调整了。在0.5℃下80次循环后,AS准备的电池显示出70%的初始容量。初步证明了调节从1:1.35至1:1.22的正极和负电极容量比的可能性。它被认为是准备好的电池可以满足一些特殊便携式电气仪器的要求。

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