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Influence of the specific surface area of Stoeber silica additives on the electrochemical properties of negative electrodes in lead-acid batteries

机译:Stiober二氧化硅添加剂比表面积对铅酸电池中负电极电化学性能的影响

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摘要

The surface area of carbon additives has been described as a key property for the enhancement of cycling stability and dynamic charge acceptance (DCA) of negative lead-acid electrodes. However, it is still uncertain if similar performance enhancing effects can be achieved by other inorganic additives of similar structure, or if the electrochemical activity of carbon additives is mandatory for the enhancing effects. In order to elucidate the importance of structure and electrochemical activity of high DCA additives, Stober silica with tailorable particle size and specific external surface area were prepared and incorporated into negative lead-acid electrodes, combined with the addition of carbon black to ensure high cycling stability. The properties and electrical performance of the negative active material were investigated by electrical tests in 2 V laboratory cells and different physical characterization methods. The overall electrochemical activity in terms of hydrogen evolution and double-layer capacitance was not affected by the silica additive and therefore is also independent of the external surface area. In addition, the silica particles led to a slightly reduced, though steady, mass utilization and discharge capacity. Finally the DCA could not be improved by the Stober silica additives, which excludes Stober silica as high DCA additive. In addition, since the DCA performance has not been increased, despite the broad specific surface area range of the additive particles utilized, this study provides a clear indication that the performance enhancement observed with carbon additives also relies on their electrical conductivity.
机译:碳添加剂的表面积被描述为增强负铅酸电极的循环稳定性和动态电荷接受(DCA)的关键性质。然而,如果可以通过其他类似结构的其他无机添加剂可以实现类似的性能增强效果,或者如果碳添加剂的电化学活性用于增强效果,则仍然不确定。为了阐明高DCA添加剂的结构和电化学活性的重要性,制备具有可定制粒度和特异性外表面积的贫尔二氧化硅,并掺入负铅酸电极中,加入炭黑以确保高循环稳定性。通过2V实验室细胞和不同的物理表征方法研究了负极活性物质的性质和电性能。在氢逸出和双层电容方面的整体电化学活性不受二氧化硅添加剂的影响,因此也与外表面区域无关。此外,二氧化硅颗粒导致略微降低,虽然稳定,质量利用和放电容量。最后,DCA不能通过斯普利二氧化硅添加剂改善,其中排除了斯普尔二氧化硅作为高DCA添加剂。此外,由于DCA性能尚未增加,尽管使用的添加剂颗粒的宽比表面积范围,但本研究提供了清楚的指示,其中用碳添加剂观察到的性能增强也依赖于它们的电导率。

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