新兴的和硫共碳材料用于电化学能量储存和转换
Xia Chen1, Ping Feng2, Yong Zheng1,3
1College of Materials and Chemical Engineering, Key Laboratory of Inorganic Nonmetallic Crystalline and Energy Conversion Materials, China Three Gorges University, Yichang, 443002, China.
Small (Weinheim an der Bergstrasse, Germany)
|February 16, 2025
概括
无金属和硫合金碳材料为电化学能量储存和转换 (EESC) 应用提供了增强的导电性和稳定性. 本综述强调了它们在电池,超级电容器和催化剂中的合成和性能.
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
- 储能和能源转化 储能和能源转化
背景情况:
- 全球不断增长的能源需求需要先进的可持续能源解决方案.
- 电化学储能和转换 (EESC) 技术对于满足这些需求至关重要.
- 无金属的异原子合碳,特别是 (N) 和硫 (S) 合材料,对欧洲经济与社会事务委员会来说是有前途的.
研究的目的:
- 审查和硫编碳材料 (NSDCMs) 的合成策略.
- 在EESC的各种应用中提供NSDCM的全面概述.
- 讨论未来国家安全与发展委员会在 EESC领域的研究方向.
主要方法:
- 对NSDCMs的合成方法的文献综述.
- 对 EESC 应用 NSDCM 的最新进展进行分析.
- 在储能 (超级电容器,电池) 和能量转换 (催化) 中探索NSDCM.
主要成果:
- NSDCM具有出色的导电性,高表面积和化学稳定性.
- 纳入N和S原子增强了电子分布,并创建了活性位点,提高了电化学性能.
- 在超级电容器,离子电池,硫电池以及进化和二氧化碳减排等催化过程中,NSDCM显示出显著的潜力.
结论:
- 对于 EESC 的各种应用来说,NSDCM 是非常有效的材料.
- 与N和S的战略合并显著改善了材料性能和电化学性能.
- 对NSDCM的进一步研究将推动可持续电化学能源系统的进步.
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