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Ca{sub}3(PO{sub}4){sub}2 coating of spherical Ni(OH){sub}2 cathode materials for Ni-MH batteries at elevated temperature

机译:用于高温镍氢电池的球形Ni(OH){sub} 2正极材料的Ca {sub} 3(PO {sub} 4){sub} 2涂层

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摘要

Calcium phosphate was used for surface modification of spherical nickel hydroxide to improve its high temperature performance at the first time due to its low cost. The Ca{sub}3(PO{sub}4){sub}2 and Co(OH){sub}2 coated nickel hydroxides were prepared by precipitation of Ca{sub}3(PO{sub}4){sub}2 on the surface of spherical nickel hydroxide, followed by precipitation of Co(OH)2 on its surface. The optimum coating content of calcium was around 2% (atomic concentration) to obtain high discharge capacity both at 25 and 60℃. It was shown that the discharge capacity of nickel hydroxide at higher temperatures was improved by coating of Ca{sub}3(PO{sub}4){sub}2 and cobalt hydroxide. The high temperature performances of the sealed AA-sized nickel-metal hydride (Ni-MH) batteries using Ca/Co coated nickel hydroxide as positive electrodes were carried out, showing much better than those using uncoated or only Co(OH){sub}2 coated nickel hydroxide electrodes. The charge acceptance of the battery using 2% Ca and 2% Co coated nickel hydroxide reached 81% at 60℃, where the charge acceptances for uncoated and only Co(OH){sub}2 coated nickel hydroxide were only 42 and 48%, respectively. It has shown that the Ca/Co coating is an effective way to improve the high temperature performance of nickel hydroxide for nickel-metal hydride batteries. It is a promising cathode material of Ni-MH batteries for EV applications due to the cost.
机译:磷酸钙因其低成本而首次用于球形氢氧化镍的表面改性,以提高其高温性能。通过沉淀Ca {sub} 3(PO {sub} 4){sub} 2制备Ca {sub} 3(PO {sub} 4){sub} 2和Co(OH){sub} 2包覆的氢氧化镍在球形氢氧化镍表面上沉积,然后在其表面上沉淀出Co(OH)2。钙的最佳涂层含量为2%(原子浓度)左右,以在25和60℃下获得高放电容量。结果表明,通过涂覆Ca {sub} 3(PO {sub} 4){sub} 2和氢氧化钴可以提高氢氧化镍在较高温度下的放电容量。进行了使用Ca / Co涂层氢氧化镍作为正极的密闭AA尺寸镍金属氢化物(Ni-MH)电池的高温性能,其性能远远优于未涂覆或仅使用Co(OH)的电池。 2个涂覆的氢氧化镍电极。使用60%的2%Ca和2%Co包覆的氢氧化镍对电池的充电接受率在60℃时达到81%,而未包覆的和仅Co(OH){sub} 2包覆的氢氧化镍的充电接受率分别为42%和48%,分别。结果表明,Ca / Co涂层是提高氢氧化镍镍氢电池高温性能的有效方法。由于成本原因,它是用于电动汽车的镍氢电池正极材料。

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