| Literature DB >> 29704298 |
Xiulin Fan1, Fei Wang2, Xiao Ji1, Ruixing Wang3, Tao Gao1, Singyuk Hou1, Ji Chen1, Tao Deng1, Xiaogang Li1, Long Chen1, Chao Luo1, Luning Wang3, Chunsheng Wang1.
Abstract
Low-cost multivalent battery chemistries (Mg2+ , Al3+ ) have been extensively investigated for large-scale energy storage applications. However, their commercialization is plagued by the poor power density and cycle life of cathodes. A universal polyimides@CNT (PI@CNT) cathode is now presented that can reversibly store various cations with different valences (Li+ , Mg2+ , Al3+ ) at an extremely fast rate. The ion-coordination charge storage mechanism of PI@CNT is systemically investigated. Full cells using PI@CNT cathodes and corresponding metal anodes exhibit long cycle life (>10000 cycles), fast kinetics (>20 C), and wide operating temperature range (-40 to 50 °C), making the low-cost industrial polyimides universal cathodes for different multivalent metal batteries. The stable ion-coordinated mechanism opens a new foundation for the development of high-energy and high-power multivalent batteries.Entities:
Keywords: aluminum; lithium ion batteries; magnesium; multivalent batteries; organic cathodes
Year: 2018 PMID: 29704298 DOI: 10.1002/anie.201803703
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336