He Jianjiang, Bao Kaijing, Cui Weiwei, Yu Jiaojiao, Huang Changshui, Shen Xiangyan, Cui Zili, Wang Ning
Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, No. 189 Songling Road, Qingdao, 266101, P.R. China.
Qingdao University of Science and Technology, No. 53 Zhengzhou Road, Qingdao, 266042, P.R. China.
Chemistry. 2018 Jan 24;24(5):1187-1192. doi: 10.1002/chem.201704581. Epub 2017 Dec 14.
Large-area graphdiyne film is constructed by heat treatment, including thermally induced evaporation and a cross-coupling reaction process. The growth mechanism is proposed based on the observation and characterization that the heating temperature plays an important role in the evaporation of oligomers and in triggering the thermal cross-coupling reaction, whereas the heating duration mainly determines the execution of the thermal cross-coupling reaction. By controlling the heat-treatment process, a graphdiyne film with uniform morphology and good conductivity is obtained. The improved GDY film based electrodes deliver good interfacial contact and more lithium storage sites; thus leading to superior electrochemical performance. A reversible capacity of 901 mAh g is achieved. Specifically, the electrodes exhibit excellent rate performance, with which a capacity of 430 mAh g is maintained at a rate as high as 5 A g . These advantages mean that the uniform graphdiyne film is a good candidate for the fabrication of a flexible and high-capacity electrode material.
大面积石墨炔薄膜通过热处理构建而成,包括热诱导蒸发和交叉偶联反应过程。基于观察和表征提出了生长机制,即加热温度在低聚物蒸发和引发热交叉偶联反应中起重要作用,而加热持续时间主要决定热交叉偶联反应的进行。通过控制热处理过程,获得了具有均匀形态和良好导电性的石墨炔薄膜。改进的基于石墨炔薄膜的电极具有良好的界面接触和更多的锂存储位点;因此导致优异的电化学性能。实现了901 mAh g的可逆容量。具体而言,电极表现出优异的倍率性能,在高达5 A g的倍率下仍保持430 mAh g的容量。这些优点意味着均匀的石墨炔薄膜是制备柔性高容量电极材料的良好候选者。