Graduate School of EEWS (WCU) and Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology, Daejeon, Republic of Korea.
Adv Mater. 2013 Mar 20;25(11):1571-6. doi: 10.1002/adma.201203981. Epub 2012 Dec 27.
Conjugation of mussel-inspired catechol groups to various polymer backbones results in materials suitable as silicon anode binders. The unique wetness-resistant adhesion provided by the catechol groups allows the silicon nanoparticle electrodes to maintain their structure throughout the repeated volume expansion and shrinkage during lithiation cycling, thus facilitating substantially improved specific capacities and cycle lives of lithium-ion batteries.
将贻贝启发的儿茶酚基团与各种聚合物主链连接,得到适合作为硅阳极粘结剂的材料。儿茶酚基团提供的独特的耐湿性附着力,使硅纳米颗粒电极在锂化循环过程中反复的体积膨胀和收缩过程中保持其结构,从而显著提高锂离子电池的比容量和循环寿命。