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Effect of Aromatic Rings and Substituent on the Performance of Lithium Batteries with Rylene Imide Cathodes

机译:芳烃对亚亚胺阴极锂电池性能的影响

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摘要

Rylene imides (RIs) are attractive organic battery materials because of the inherent modularity of the molecules. While strong aggregation of RIs is disadvantageous for fast lithium-ion transport in the organic active material, decreasing the solubility of the RIs in battery electrolytes is essential to avoid performance fading. Therefore, the design and synthesis of RIs for lithium batteries is a non-trivial task that must, among other considerations, balance lithium-ion transport in the solid material vs. low solubility by controlling aggregation and packing. We have chosen triphenylamine (TPA) as a substituent which disrupts the aggregation but maintains a low solubility due to increased aromaticity of TPA. We have synthesized three RIs with one, two, and four aromatic units in the core. All of them showed stable specific capacity over 300 charge-discharge cycles. The batteries also showed specific capacities close to their theoretical capacities with 97-99 % coulombic efficiency. The maximum specific energy and specific power were 197 mWh g(-1) and 37 mW g(-1), respectively.
机译:亚麻酰亚胺(RIS)是有吸引力的有机电池材料,因为分子的固有模块性。虽然RIS的强度聚集在有机活性材料中的快速锂离子输送不利,但降低了RIS在电池电解质中的溶解度对于避免性能衰落至关重要。因此,锂电池的RIS的设计和合成是一种非琐碎的任务,必须在其他考虑方面,通过控制聚集和包装来平衡固体材料中的锂离子输送。我们选择了三苯胺(TPA)作为破坏聚集的取代基,但由于TPA的芳香性增加,因此保持低溶解度。我们在核心中合成了三个RI,其中两个和四个芳香单位。所有这些都显示出超过300个电荷放电循环的稳定特定容量。电池还展示了靠近其具有97-99%的库仑效率的理论能力的具体能力。最大特定能量和特定功率分别为197米MWH G(-1)和37mWg(-1)。

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