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Electrochemical lithium storage performance of three-dimensional foam-like biocarbon/MoS2 composites 被引量:6
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作者 Bei-bei MA Shui-jiao CHEN +4 位作者 Ye-wei HUANG Zhen-zhen NIE Xiao-bin QIU Xiu-qiang XIE Zhen-jun WU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第1期255-264,共10页
Molybdenum disulfide(MoS2)was loaded on biocarbon using waste camellia dregs(CDs)as the carbon source,which was further coated with dopamine hydrochloride to construct biocarbon/MoS2 electrode composites.The electroch... Molybdenum disulfide(MoS2)was loaded on biocarbon using waste camellia dregs(CDs)as the carbon source,which was further coated with dopamine hydrochloride to construct biocarbon/MoS2 electrode composites.The electrochemical lithium storage performance of the composites with different MoS2 contents was investigated.SEM results demonstrated that the composite had a three-dimensional foam-like structure with MoS2 as the interlayer.XRD and HRTEM tests revealed that MoS2 interlayer spacing in the composite was expanded.XPS analysis showed that new Mo—N bonds were formed in the active material.The electrochemical tests showed that the composite with a MoS2 content of 63%had a high initial specific capacity of 1434 mA·h/g at a current density of 100 mA/g.After a long cycle at a high current,it also showed good cycling stability and the capacity retention was nearly 100%.In addition,it had good lithium ion deintercalation ability in the electrochemical kinetics test. 展开更多
关键词 electrochemical lithium storage performance lithium-ion batteries camellia dregs MOS2 COMPOSITES pseudocapacity anode
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羧甲基纤维素锂在导电纸中的应用
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作者 夏银凤 +4 位作者 李友琦 杜琨 周子来 郭禹辰 张毅 《中华纸业》 CAS 2022年第23期63-67,共5页
主要研究了不同纤维素醚(CMC-Na与CMC-Li)同CTAB作为多壁碳纳米管与石墨烯混合导电材料分散剂对导电材料分散性与稳定性差异,及以对应分散后的导电浆料与针叶木浆混合抄造成的导电纸电阻率、撕裂强度、拉毛强度及透气度在内的纸张性能... 主要研究了不同纤维素醚(CMC-Na与CMC-Li)同CTAB作为多壁碳纳米管与石墨烯混合导电材料分散剂对导电材料分散性与稳定性差异,及以对应分散后的导电浆料与针叶木浆混合抄造成的导电纸电阻率、撕裂强度、拉毛强度及透气度在内的纸张性能影响。通过测试对比得出,CMC-Li在导电浆料分散性与稳定性,及导电纸撕裂强度与拉毛强度表现最优,而在导电纸电阻率与透气度表现同CMC-Na相当,但所有指标表现均优于CTAB分散剂,同时对导电纸用分散剂筛选提出了建议,以期对纤维素醚生产者及导电纸或导电材料开发者在推荐或筛选分散剂时有所帮助。 展开更多
关键词 纤维素醚 导电材料 导电纸 纸张性能
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