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Use of Cellulose Nanofibers as an Electrode Binder for Lithium Ion Battery Screen Printing on a Paper Separator

机译:纤维素纳米纤维作为锂离子电池丝网印刷机在纸张分离器上的粘合剂

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摘要

Water-based inks were formulated using cellulose nanofibers as a binder in order to directly front/reverse print lithium ion cells on a paper separator. Moreover, the high cohesion of electrodes as provided by cellulose nanofibers allowed for the embedding metallic current collectors in the electrodes during the printing stage, in order to develop a one-step printing and assembling process. Positive and negative inks based on LiFePO4, or graphite, respectively, and cellulose nanofibers, displayed rheological properties complying with a variety of printing processes, as well as with screen printing. Printed cells exhibited high electrical conductivity and adhesion between current collectors and inks, i.e., up to 64 ± 1 J/m2. Electrochemical cycling tests at C/10 showed a reversible capacity during the first cycle of about 80 mAh/g, which slightly decayed upon cycling. Preliminary results and assembling strategies can be considered as promising, and they represent a quick solution for the manufacturing of lithium ion batteries. Work is in progress to improve these processing issues and the cycling performances of Li-ion cells.
机译:使用纤维素纳米纤维作为粘合剂配制水基油墨,以便在纸张分离器上直接正面/反面打印锂离子电池。此外,由纤维素纳米纤维提供的电极的高内聚力允许在印刷阶段将金属集电器嵌入电极中,从而发展出一步印刷和组装过程。分别基于LiFePO4或石墨的正负油墨以及纤维素纳米纤维具有流变特性,符合各种印刷工艺以及丝网印刷。印刷电池显示出高电导率和集电器与油墨之间的附着力,即高达64±1 J / m 2 。 C / 10的电化学循环测试显示,在第一个循环中,可逆容量约为80 mAh / g,在循环时会略有下降。初步结果和组装策略可以认为是有希望的,它们代表了锂离子电池制造的快速解决方案。改善这些处理问题和锂离子电池循环性能的工作正在进行中。

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