MXenes公司
共轭微孔聚合物
超级电容器
共价键
材料科学
电化学储能
聚合物
微型多孔材料
共轭体系
纳米复合材料
纳米技术
化学
有机化学
电化学
复合材料
物理化学
电极
作者
Weizu Yang,Bingyu Huang,Longbin Li,Kaiyang Zhang,Yizhe Li,Jun Huang,Xiannong Tang,Ting Hu,Kai Yuan,Yiwang Chen
标识
DOI:10.1002/smtd.202000434
摘要
Abstract 2D MXenes have attracted wide attention due to their unique chemical and physical properties. However, MXene nanosheets suffer from restacking and are susceptible to oxidation and consequently lose their functional properties which limits their applications. Thus, it is desirable to explore strategies to preserve MXene nanosheets and avoid oxidation. Herein, an effective strategy to produce MXene‐based conjugated microporous polymers (M‐CMPs) by covalently sandwiching MXene between CMPs using p‐iodophenyl functionalized MXene as templates is demonstrated. The as‐prepared M‐CMPs inherit the 2D architecture and high conductivity of MXene in terms of hierarchical porous structure and large specific surface area of CMPs. Moreover, the restacking and oxidation of MXene are simultaneously suppressed. Such advanced structural merits are critical for electrochemical energy storage. As‐proof‐of‐concept, the M‐CMPs are used as electrode materials for supercapacitors. As expected, with the improved structural advantages, M‐CMPs showcase superior capacitive performance than the MXene and CMPs counterparts. This work not only provides an opportunity for fabricating high performance MXene nanocomposites for energy storage/conversion but also has the potential to be generalized to resolve the challenges in the area of MXene engineering.
科研通智能强力驱动
Strongly Powered by AbleSci AI