4.7 Article

Study on effects of carboxymethyl cellulose lithium (CMC-Li) synthesis and electrospinning on high-rate lithium ion batteries

Journal

CELLULOSE
Volume 21, Issue 1, Pages 615-626

Publisher

SPRINGER
DOI: 10.1007/s10570-013-0108-z

Keywords

Electrospinning; CMC-Li; Lithium ion battery; Anode materials AQ; CNF

Funding

  1. National Science-Technology Support Plan project [2011BAD23B04]
  2. special programs of the Graduate Students' Scientific and Technological Innovation Activities of Beijing Institute of Technology [3090012241302]
  3. Youth Science and Technology Innovation Projects of North Chemical Industry Co., Ltd. [QKCZ-BIT-04]

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This study, for the first time, synthesized carboxymethyl cellulose lithium (CMC-Li) by a two-step method and applied it to modified electrode material by electrospinning and as a binder on a lithium ion battery. By electrospinning, nano CMC-Li fiber and CMC-Li/9, 10-anthraquinone (AQ) composite fiber were obtained successfully and coated AQ electrode material. AQ was uniformly distributed in fibers, and then CMC-Li/AQ composite fiber was carbonized to obtain the carbon nanofiber/AQ/Li [CAL] composite as lithium battery anode material. Also for the first time we investigated substituting aqueous CMC-Li with different degrees of substitution (DS) for oily polyvinylidene fluoride (PVDF) as a lithium battery binder to assemble the battery with CAL for electrochemical performance tests. Compared with PVDF binder, cells with CMC-Li for a binder have excellent advantages, such as higher discharge capacity (226.4 mAh g(-1)), safer cycle performance, lower cost and being more eco-friendly. Furthermore, the cell with CMC-Li with high DS performed better than the cell with low DS. This method also applies to other electrode materials.

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