超级电容研究的最新趋势:能源和材料的可持续性
Daria V Chernysheva1, Nina V Smirnova1, Valentine P Ananikov1,2
1Platov South-Russian State Polytechnic University (NPI), Prosveschenia str. 132, Novocherkassk, 346428, Russia.
ChemSusChem
|November 10, 2023
概括
本综述强调了超级电容 (SC) 研究的进展,重点关注现代电子产品的可持续电极材料,电解质和智能SC. 创新旨在在高效,多功能和环保的储能解决方案中实现高能量和功率密度.
科学领域:
- 材料科学 材料科学 材料科学
- 电化学 电化学 电化学
- 储能 储能 储能 储能 储能 储能
背景情况:
- 超级电容器 (SC) 对于需要快速充放电,高功率密度和可靠性的应用至关重要.
- 目前的研究重点是提高SC性能和可持续性,用于各种应用.
研究的目的:
- 审查超级电容研究的最新进展,强调可持续性,电极材料,电解质和智能SC.
- 提供当前超级电容器景观的可访问概述.
主要方法:
- 分析最近关于超级电容器进步的科学文献.
- 专注于关键领域:可持续性,电极材料 (碳材料,伪容量材料),电解质和智能SCs.
- 探索提高效率的策略和新的SC设计.
主要成果:
- 碳材料 (CM) 在电双层电容器 (EDLC) 中使用,但面临低能量密度的挑战,由异质原子引入来解决.
- 伪容量材料很突出,目前正在进行混合体,表面工程和提高效率的兴奋剂研究.
- 凝聚合物电解质正在出现灵活的SC,以及具有自我充电和生物相容功能的智能SC.
结论:
- 可持续的超级电容研究旨在实现高能量和功率密度.
- 该领域正在向使用生物衍生/生物相容材料的高效,多用途的SC移动.
- 创新推动了现代电子产品先进的储能解决方案的开发.
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