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Thick-film nickel-metal-hydride battery based on porous ceramic substrates

机译:基于多孔陶瓷基板的厚膜镍氢电池

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摘要

Nickel-metal-hydride (Ni-MH) batteries are prepared with thick-film and thin-film technologies based on porous ceramic substrates. The porosity and the mean pore diameter of BP ceramic substrates prepared from the argils increases from 19.81% and 0.0432 μm to 29.81% and 0.224 μm, respectively, upon increasing the ethyl cellulose content in the BP argil from 0 to 0.79%. The pore diameter of Al_2O_3 substrates prepared from Al_2O_3 powder is mainly distributed in the range 0.01-0.5 μm. The distribution of the pore diameters of BP ceramic substrates lies in two ranges, namely: 0.04-2 μm and 10-300 μm. Using BP ceramic plates and Al_2O_3 plates as substrates to fabricate thick-film Ni-MH batteries, the optimal electroactive material utilization in the batteries is 77.0 and 71.1%, respectively. On increasing the screen-printing number for preparing the cathode (Ni(OH)_2) from 1 to 3, the discharge capacity of the thick-film battery increases from 0.2917 to 0.7875 mAh, and the utilization in the battery decreases from 71.0 to 53.0%.
机译:镍氢(Ni-MH)电池是采用厚膜和薄膜技术基于多孔陶瓷基板制备的。当将BP防霉中的乙基纤维素含量从0增加到0.79%时,由这些小块制备的BP陶瓷基质的孔隙率和平均孔径分别从19.81%和0.0432μm增加到29.81%和0.224μm。由Al_2O_3粉末制备的Al_2O_3衬底的孔径主要分布在0.01-0.5μm的范围内。 BP陶瓷基体的孔径分布在两个范围内,即:0.04-2μm和10-300μm。以BP陶瓷板和Al_2O_3板为基材,制备厚膜Ni-MH电池,电池中最佳电活性材料利用率分别为77.0%和71.1%。在将用于制备阴极(Ni(OH)_2)的丝网印刷次数从1增加到3时,厚膜电池的放电容量从0.2917增加到0.7875 mAh,并且电池中的利用率从71.0降低到53.0 %。

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