电化学储能
部分
纳米技术
电化学
氧化还原
组合化学
储能
化学
生化工程
计算机科学
材料科学
有机化学
工程类
物理
超级电容器
功率(物理)
电极
物理化学
量子力学
作者
Kang‐Yu Zou,Wentao Deng,Debbie S. Silvester,Guoqiang Zou,Hongshuai Hou,Craig E. Banks,Lingjun Li,Jiugang Hu,Xiaobo Ji
出处
期刊:ACS Nano
[American Chemical Society]
日期:2024-07-29
卷期号:18 (31): 19950-20000
被引量:70
标识
DOI:10.1021/acsnano.4c02307
摘要
On the basis of the sustainable concept, organic compounds and carbon materials both mainly composed of light C element have been regarded as powerful candidates for advanced electrochemical energy storage (EES) systems, due to theie merits of low cost, eco-friendliness, renewability, and structural versatility. It is investigated that the carbonyl functionality as the most common constituent part serves a crucial role, which manifests respective different mechanisms in the various aspects of EES systems. Notably, a systematical review about the concept and progress for carbonyl chemistry is beneficial for ensuring in-depth comprehending of carbonyl functionality. Hence, a comprehensive review about carbonyl chemistry has been summarized based on state-of-the-art developments. Moreover, the working principles and fundamental properties of the carbonyl unit have been discussed, which has been generalized in three aspects, including redox activity, the interaction effect, and compensation characteristic. Meanwhile, the pivotal characterization technologies have also been illustrated for purposefully studying the related structure, redox mechanism, and electrochemical performance to profitably understand the carbonyl chemistry. Finally, the current challenges and promising directions are concluded, aiming to afford significant guidance for the optimal utilization of carbonyl moiety and propel practicality in EES systems.
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