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1)  silicon-based anodes
硅基负极材料
2)  tin-based materials as ancde
锡基负极材料
3)  silicon-based anode
硅基负极
1.
The progress of silicon-based anode materials were especially reviewed.
对锂离子电池材料包括正极材料、电解质材料和负极材料作了简要概述,并综述了当前高容量硅基负极材料的研究概况,对今后发展高容量高循环稳定性的硅基负极材料提出了研发思路。
4)  negative electrode materials
负极材料
1.
Research progress on novel non-carbon negative electrode materials for lithium ion batteries;
非碳类新型锂离子蓄电池负极材料研究进展
2.
The methods for improving the properties of graphite negative electrode materials in Li-ion battery;
锂离子电池石墨负极材料的改性方法
3.
Development of Li-ion batteries for military fields and its negative electrode materials;
军用锂离子电池及负极材料研究进展
5)  negative electrode material
负极材料
1.
Study of Co_3O_4 with doped PTFE as negative electrode material;
掺杂PTFE改性Co_3O_4负极材料的研究
2.
The solid solution alloys showed easy activation behavior(to reach the maximum capacity within 3 cycles) and favorable rate dischargeability as a negative electrode material in Ni-MH batteries.
4)Cr_x系列合金作为镍-氢化物电池负极材料具有良好的活化性能(3次循环可以达到最大放电容量)和倍率放电能力;由于Cr取代Mn抑制了合金中吸氢元素V充放电过程中在电解液中溶解,显著改善了此系列合金电极的循环寿命,20周循环后循环稳定性系数S20从6。
3.
Polyacrylonitrile(PAN)-based carbon felt and nickelfoamor carbon felt with Ni or Co coat were used as positive and negative electrode materials for the polysulfide/bromine battery(PSB).
结果表明:泡沫镍及镀镍或钴的碳毡可做电池负极材料;充放电电流密度为30mA/cm2时,电池的能量效率约 80 %;电池循环性能较好。
6)  anode material
负极材料
1.
Amorphous carbon nanotubes as new anode material for lithium ion batteries;
非晶碳纳米管新型锂离子电池负极材料
2.
Nano Sn-SnO-Zn anode material synthesized by solid state reaction;
固相反应法制备Sn-SnO-Zn纳米负极材料
3.
Graphite wastes used as anode material for lithium ion batteries;
石墨电极废料用作锂离子蓄电池负极材料
补充资料:双(三乙氧基硅氧基)二丁基锡
CAS:87735-26-0
分子式:C20H48O8Si2Sn

中文名称:6,6-二丁基-4,4,8,8-四乙氧基-3,5,7,9-四氧杂-4,8-二硅杂-6-锡杂十一烷
双(三乙氧基硅氧基)二丁基锡

英文名称:5,7,9-Tetraoxa-4,8-disila-6-stannaundecane, 6,6-dibutyl-4,4,8,8-tetraethoxy-3
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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