期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
700M空口性能优良率优化方案的研究与实践
1
作者 葛兆阳 蒋丽萍 胡勤伟 《山东通信技术》 2022年第3期17-21,24,共6页
利用“干扰智能分析”、“干扰避让”、精准定位自动优化等功能,制定一套整体提升700M网络性能和用户感知的方法,可以持续改善700M网络运行质量,极大提升用户感知。
关键词 700M网络 性能优良率 广电干扰避让 精准定位 邻区自动优化
下载PDF
A unique co-recovery strategy of cathode and anode from spent LiFePO_(4) battery 被引量:3
2
作者 Kai-Di Du Yun-Feng Meng +4 位作者 Xin-Xin Zhao Xiao-Tong Wang Xiao-Xi Luo Wei Zhang Xing-Long Wu 《Science China Materials》 SCIE EI CAS CSCD 2022年第3期637-645,共9页
Along with the explosive growth in the market of new energy electric vehicles,the demand for Li-ion batteries(LIBs)has correspondingly expanded.Given the limited life of LIBs,numbers of spent LIBs are bound to be prod... Along with the explosive growth in the market of new energy electric vehicles,the demand for Li-ion batteries(LIBs)has correspondingly expanded.Given the limited life of LIBs,numbers of spent LIBs are bound to be produced.Because of the severe threats and challenges of spent LIBs to the environment,resources,and global sustainable development,the recycling and reuse of spent LIBs have become urgent.Herein,we propose a novel green and efficient direct recycling method,which realizes the concurrent reuse of LiFePO_(4)(LFP)cathode and graphite anode from spent LFP batteries.By optimizing the proportion of LFP and graphite,a hybrid LFP/graphite(LFPG)cathode was designed for a new type of dualion battery(DIB)that can achieve co-participation in the storage of both anions and cations.The hybrid LFPG cathode combines the excellent stability of LFP and the high conductivity of graphite to exhibit an extraordinary electrochemical performance.The best compound,i.e.,LFP:graphite=3:1,with the highest reversible capacity(~130 mAhg^(-1) at 25 mAg^(-1)),high voltage platform of 4.95 V,and outstanding cycle performance,was achieved.The specific diffusion behavior of Li^(+) and PF_(6)^(-) in the hybrid cathode was studied using electrode kinetic tests,further clarifying the working mechanism of DIBs.This study provides a new strategy toward the large-scale recycling of positive and negative electrodes of spent LIBs and establishes a precedent for designing new hybrid cathode materials for DIBs with superior performance using spent LIBs. 展开更多
关键词 LiFePO_(4) GRAPHITE dual-ion batteries spent LIBs RECYCLE
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部