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High-performance of sodium carboxylate-derived materials for electrochemical energy storage
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作者 Yong Xu1 Jun Chen1 +7 位作者 Caijian Zhu1 Pengwei Zhang1 Guoxiang Jiang1 Chunxiang Wang1 Qian Zhang1 nengwen ding1 Yaxiang Huang2 Shengwen Zhong1 《Science China Materials》 SCIE EI CSCD 2018年第5期707-718,共12页
Four types of sustainable sodium carboxylate- derived materials are investigated as novel electrodes with high performance for lithium-ion batteries. Benefiting from the porous morphology provided by their intermolecu... Four types of sustainable sodium carboxylate- derived materials are investigated as novel electrodes with high performance for lithium-ion batteries. Benefiting from the porous morphology provided by their intermolecular in- teractions, increasing capacity, excellent cycle stability and superior rate performance are observed for the sodium car- boxylate-derived materials. The sodium oxalate (SO) electro- des displayed an increasing discharging capacity at a current density of 50 mA g-1 with maximum values of 242.9 mA h g-1 for SO-631 and 373.9 mA h g-1 for SO-541 during the 100th cycle. In addition, the SO-541, SC-541 (sodium citrate), ST- 541 (sodium tartrate) and SP-541 (sodium pyromellitate) electrode materials displayed high initial capacities of 619.6-392.3, 403.7 and 278.1 mA h g-1, respectively, with capacity retentions of 179%, 148%, 173% and 108%, respectively, after 200 cycles at 50 mA g-1. Even at a high current density of 2,000 mA g-1, the capacities remain 157.6, 131.3, 146.6 and 137.0mAhg-1, respectively. With these superior electro- chemical properties, the sodium carboxylate-derived materials could be considered as promising organic electrode materials for large-scale sustainable lithium-ion batteries. 展开更多
关键词 sodium carboxylate lithium-ion batteries organicelectrode electrochemical performance green and sustainable
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