Narayana Kishore Anand, Casselman Matthew D, Elliott Corrine F, Ergun Selin, Parkin Sean R, Risko Chad, Odom Susan A
Department of Chemistry, University of Kentucky, Lexington, KY, 40506-0055 (USA).
Chemphyschem. 2015 Apr 27;16(6):1179-89. doi: 10.1002/cphc.201402674. Epub 2014 Dec 11.
Phenothiazine and five N-substituted derivatives were evaluated as electrolyte additives for overcharge protection in LiFePO4 /synthetic graphite lithium-ion batteries. We report on the stability and reactivity of both the neutral and radical-cation forms of these six compounds. While three of the compounds show extensive overcharge protection, the remaining three last for only one to a few cycles. UV/Vis studies of redox shuttle stability in the radical cation form are consistent with the overcharge performance: redox shuttles with spectra that show little change over time exhibit extensive overcharge performance, whereas those with changing spectra have limited overcharge protection. In one case, we determined that a C-N bond cleaves upon oxidation, forming the phenothiazine radical cation and leading to premature overcharge protection failure; in another case, poor solubility appears to limit protection.
吩噻嗪及其五种 N-取代衍生物被评估为磷酸铁锂/合成石墨锂离子电池中用于过充电保护的电解质添加剂。我们报告了这六种化合物的中性和自由基阳离子形式的稳定性和反应活性。虽然其中三种化合物显示出广泛的过充电保护,但其余三种仅能持续一到几个循环。对自由基阳离子形式的氧化还原穿梭稳定性的紫外/可见光谱研究与过充电性能一致:光谱随时间变化不大的氧化还原穿梭表现出广泛的过充电性能,而光谱发生变化的则过充电保护有限。在一个案例中,我们确定一个 C-N 键在氧化时断裂,形成吩噻嗪自由基阳离子并导致过充电保护过早失效;在另一个案例中,溶解度差似乎限制了保护作用。