材料科学
插层(化学)
锂(药物)
MXenes公司
化学工程
离子
电化学
无机化学
电解质
石墨烯
电池(电)
储能
作者
Peer Bärmann,Martin Winter,Jesus Gonzalez-Julian,Tobias Placke
出处
期刊:Small
[Wiley]
日期:2021-10-11
卷期号:17 (47): 2104130-
标识
DOI:10.1002/smll.202104130
摘要
MXenes attract tremendous research efforts since their discovery in 2011 due to their unique physical and chemical properties, allowing for application in various fields. One of them is electrochemical energy storage due to their pseudocapacitive (=redox) behavior, high electronic conductivity, and charge storage versatility regarding the cationic species (e.g., Li+ ). MXenes typically display stable charge/discharge cycling behavior over hundreds of cycles in numerous electrolytes, however, a drastic loss of reversible capacity is detectable during the initial cycles. Furthermore, an electrochemical activation is also reported in the literature, especially for free-standing electrodes. Here, these electrochemical phenomena are investigated by electrochemical and analytical means to decipher the responsible mechanism by comparing few-layered and multi-layered Ti3 C2 Tx . A change in the pseudocapacitive behavior of MXenes during cycling can be explained by in situ X-ray diffraction studies, revealing solvent co-intercalation in the first cycle for the morphologically different MXenes. This co-intercalation is responsible for the capacity decay detected in the first cycles and is also responsible for the ongoing activation occurring in later cycles.
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