电池(电)
起飞
攀登
阳极
淡出
泄流深度
核工程
汽车工程
锂离子电池
锂(药物)
材料科学
功率(物理)
脉冲功率
环境科学
航空航天工程
电气工程
计算机科学
工程类
化学
电压
物理
电极
物理化学
内分泌学
操作系统
医学
量子力学
作者
Marm Dixit,Anuj Bisht,Rachid Essehli,Ruhul Amin,Chol-Bum Kweon,Ilias Belharouak
出处
期刊:ACS energy letters
[American Chemical Society]
日期:2024-02-12
卷期号:9 (3): 934-940
被引量:2
标识
DOI:10.1021/acsenergylett.3c02385
摘要
High power is a critical requirement of lithium-ion batteries designed to satisfy the load profiles of advanced air mobility. Here, we simulate the initial takeoff step of electric vertical takeoff and landing (eVTOL) vehicles powered by a lithium-ion battery that is subjected to an intense 15C discharge pulse at the beginning of the discharge cycle followed by a subsequent low-rate discharge. We conducted extensive electrochemical testing to assess the long-term stability of a lithium-ion battery under these high-strain conditions. The main finding is that despite the performance recovery observed at low rates, the reapplication of high rates leads to drastic cell failure. While the results highlight the eVTOL battery longevity challenge, the findings also emphasize the need for tailored battery chemistry designs for eVTOL applications to address both anode plating and cathode instability. In addition, innovative second-use strategies would be paramount upon completion of the eVTOL services.
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