企业性质
入驻年限第10年
ECC-Std测量模块
ECC-Std电化学测量池是在二电极配置池下表征质子电池和电容器系统的
ECC-Std电化学测量池是在二电极配置池下表征质子电池和电容器系统的。最典型的应用是表征锂离子电池电极 (阳极和阴极)对锂金属对电极。可以使用装配工具将ECC-Std测量池与参比电极组合,从而把ECC-Std转换成ECC-Ref测试模块。
接触电解液部分的部件是不锈钢和PEEK材料,它们可以承受所有常用的非质子有机电解质的腐蚀。
高精度,18毫米直径堆叠式几何设计,同心度优于0.1毫米
电极上的机械压力均匀可调整并可重复
使用PE垫圈的可靠的低泄漏密封件
电解质填充在组装简单、可靠
快速组装和拆卸电池组件,容易清洁
对于事后分析,很容易查看电极内部
除PE 密封圈外其它池组件可重用的
电解液的体积最小0.1毫升,最大的减小了死体积
与非质子或有机电解质接触材料是不锈钢和PEEK
可根据用户需要提供特殊材料/解决方案
可选: Std to Ref升级包
尺寸:90x 54 x 70毫米(高x宽x深)
电极直径18毫米
电解液的体积最小0.1毫升
重量640克
Chiappone, A., Nair, J. R., Gerbaldi, C., Jabbour, L., Bongiovanni, R., Zeno, E., Beneventi, D., Penazzi, N., 2011. Microfibrillated cellulose as reinforcement for Li-ion battery polymer electrolytes with excellent mechanical stability,Journal of Power Sources, 196 (23), pp. 10280-10288
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Jabbour, L., Destro, M., Gerbaldi, C., Chaussy, D., Penazzi, N., Beneventi, D., 2012. Aqueous processing of cellulose based paper-anodes for flexible Li-ion batteries,Journal of Materials Chemistry, 22, pp. 3227-3233
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Reiter, J., Nádherná, M., 2012. N-Allyl-N-methylpiperidinium bis(trifluoromethanesulfonyl)imide A film forming ionic liquid for graphite anode of Li-ion batteries,Electrochimica Acta, 71, pp. 22-26
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Cech, O., Thomas, J.E., Moreno, M. S., Visintin, A., Sedlarikova, M., Vondrak, J., 2011. Synthesis of LiFePO4/C Composite Cathode for Lithium-Ion Batteries,ECS Transactions, 32 (1), pp. 23-31
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Cech, O., Thomas, J.E., Visintin, A., Sedlarikova, M., Vondrak, J., Moreno, M. S., 2012. Cobalt Doped LiFePO4/C Composite Material for Li-Ion Cathodes,ECS Transactions, 40 (1), pp. 93-98
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Cech, O., Thomas, J.E., Sedlarikova, M., Fedorkova, A., Vondrak, J., Moreno, M. S., Visintin, A., 2013. Performance improvement on LiFePO4/C composite cathode for lithium-ion batteries,Solid State Sciences, 20, pp. 110-114
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Gerbaldi, C., Nair, J. R., Ferrari, S., Chiappone, A., Meligrana, G., Zanarini S., Mustarelli, P., Penazzi, N., Bongiovanni, R., 2012. New electrolyte membranes for Li-based cells: Methacrylic polymers encompassing pyrrolidinium-based ionic liquid by single step photo-polymerisation,Journal of Membrane Science, 423-424, pp. 459-467
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Reiter, J., Nádherná, M., Dominko, R., 2012. Graphite and LiCo1/3Mn1/3Ni1/3O2electrodes with piperidinium ionic liquid and lithium bis(fluorosulfonyl)imide for Li-ion batteries,Journal of Power Sources, 205, pp. 402-407
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Sedlarikova, M., Vondrak, J., Maca, J., Bartusek, K., 2013. Sulfolane as Solvent for Lithium Battery Electrolytes,Journal of New Materials for Electrochemical Systems, 16 (2), pp. 65-71
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Angulakshmi, N., Nahm, K. S., Nair, J. R., Gerbaldi, C., Bongiovanni, R., Penazzi, N., Stephan, A. M., 2013. Cyc领 profile of MgAl2O4-incorporated composite electrolytes composed of PEO and LiPF6for lithium polymer batteries,Electrochimica Acta, 90, pp. 179-185
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Angulakshmi, N., Thomas S., Nair, J. R., Bongiovanni, R., Gerbaldi C., Stephan, A. M., 2013. Cyc领 profile of innovative nanochitin-incorporated poly (ethylene oxide) based electrolytes for lithium batteries,Journal of Power Sources, 228, pp. 294-299
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ECC-CellLoad电极校正和组装工具
EL-Cut电极切割器
ECC-LiPunch锂箔打孔器