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首页> 外文期刊>Electrochimica Acta >Acid-base interaction between carbon black and polyurethane molecules with different amine values: Dispersion stability of carbon black suspension for use in lithium ion battery cathodes
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Acid-base interaction between carbon black and polyurethane molecules with different amine values: Dispersion stability of carbon black suspension for use in lithium ion battery cathodes

机译:炭黑与具有不同胺值的聚氨酯分子之间的酸碱相互作用:用于锂离子电池正极的炭黑悬浮液的分散稳定性

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摘要

The dispersion properties of carbon black (CB) slurries as well as the accompanying electrochemical properties of Li(Ni_(1/3)Co_(1/3)Mn_(1/3))O_2 (NCM) electrodes were investigated by controlling the amine value of polyurethane-based dispersants. The increase in amine value of dispersants leads to an increase in adsorption level on CB surface due to a strong acid/base interaction between dispersants and CB particles, providing the improvement of steric repulsion between particles at the solid-liquid interface. This results in the enhancement of the dispersion stability of CB and the related microstructure of the electrodes. Electrochemical experiments indicated that the rate capabilities and cycle performance of the electrodes are in good agreement with dispersion properties of CB slurries. However, it was found that the excessive addition of the dispersant was deleterious to electrochemical properties because the non-adsorbed dispersants act as an electronic conduction barrier between solid phases. Therefore, it is suggested that the amine value of dispersant and tailored amount of dispersant addition can be key roles for obtaining the optimized dispersion stability of CB and the corresponding excellent electrochemical properties of the cathode.
机译:通过控制胺来研究炭黑(CB)浆料的分散性能以及Li(Ni_(1/3)Co_(1/3)Mn_(1/3)O_2(NCM)电极的电化学性能聚氨酯分散剂的价值。分散剂胺值的增加由于分散剂与CB颗粒之间的强酸/碱相互作用而导致CB表面吸附水平的增加,从而改善了固液界面处颗粒之间的空间排斥。这导致CB的分散稳定性和电极的相关微观结构的增强。电化学实验表明,电极的速率能力和循环性能与CB浆料的分散性能非常吻合。然而,发现分散剂的过量添加对电化学性质有害,因为未吸附的分散剂充当固相之间的电子传导屏障。因此,建议分散剂的胺值和调整量的分散剂加入量对于获得最佳的CB分散稳定性和相应的阴极优异的电化学性能可能起关键作用。

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