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Evaluation of Porous Electrode Properties Using Metal-Air Electrochemical System

机译:金属电化学系统评价多孔电极性能

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This work explores the use of metal-air electrochemical system to evaluate porous electrode properties i.e. specific surface area and pore volume density. Porous zinc electrodes are prepared from an acidic, chloride electrolytic bath of varying supporting electrolyte (NH_4Cl) formulation to produce electrodeposits of distinctive properties. Nitrogen physisorption at 77 K is utilized to evaluate the specific surface area and pore volume density of the electrodes. The zinc electrodeposits prepared from all electrolytic bath formulations are then assembled into zinc-air cells as the anodic electrode and characterized according to their limiting current density and discharge capacity. It is found that the variation in limiting current density matches that of BET surface area and the trend for discharge capacity follows that of pore volume density.
机译:这项工作探讨了金属空气电化学系统来评估多孔电极性能I.。具体表面积和孔体积密度。多孔锌电极由不同支撑电解质(NH_4Cl)配方的酸性,氯化物电解浴制备,以产生具有独特性质的电吞吐率。 77 k处的氮原吸收用于评估电极的比表面积和孔隙体积密度。然后将由所有电解浴制剂制备的锌电沉积物作为阳极电极组装成锌 - 空气电池,并根据其限制电流密度和放电容量来表征。结果发现,限制电流密度的变化与BET表面积的变化与放电容量的趋势遵循孔体积密度。

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