超级电容器应用的过渡金属协调聚合物衍生材料:最近的进展和未来的前景
Saifullahi Kabiru Sa'adu1, Cheng Seong Khe1,2, Muhammad Fadhlullah Abd Shukur1
1Department of Applied Science, Universiti Teknologi PETRONAS, Seri Iskandar, Perak 32610, Malaysia.
Royal Society open science
|August 14, 2025
概括
过渡金属协调聚合物 (TMCP) 衍生材料显示出对超级电容器的前景. 转换策略提高了它们的导电性和稳定性,以获得高效,环保的储能解决方案.
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:
- 对高效,可持续和可扩展的储能解决方案的需求不断增加.
- 过渡金属协调聚合物 (TMCPs) 为超级电容器提供高孔度,氧化还原活性和结构适应性.
- 挑战包括TMCP的低导电性,结构不稳定性和有限的电荷保留.
研究的目的:
- 对超级电容器的TMCP衍生电极材料的最新进展进行审查.
- 突出克服TMCP性能局限性的策略.
- 探索绿色化学原理和新材料设计的整合.
主要方法:
- 对转化策略的审查 (碳化,化,硫化,氧化物形成).
- 结构工程和混合材料集成的分析.
- 研究纳米结构设计和复合材料.
- 纳入理论见解 (DFT,机器学习).
主要成果:
- 转换策略显著提高TMCP导电性,稳定性和电化学性能.
- 绿色化学原则促进了环保的超级电容器制造.
- 纳米结构设计和复合材料为高性能超级电容器打开了新的可能性.
- 理论框架有助于理解氧化还原行为和材料设计.
结论:
- 通过战略转型和创新设计增强的TMCP衍生材料对于下一代超级电容器至关重要.
- 应对当前的挑战和拥抱绿色化学将加速可持续和高效的能源储存的发展.
- 未来的研究应该专注于结合理论和实验方法,以优化TMCP材料设计.
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