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A review of ultrafast supercapacitors for AC-line filtering
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作者 SUN Qian FAN Ya-feng +4 位作者 XIE Li-jing WANG Zhen-bing HUANG Xian-hong SU Fang-yuan CHEN Cheng-meng 《新型炭材料(中英文)》 北大核心 2025年第2期243-269,共27页
Filter capacitors play an important role in altern-ating current(AC)-line filtering for stabilizing voltage,sup-pressing harmonics,and improving power quality.However,traditional aluminum electrolytic capacitors(AECs)... Filter capacitors play an important role in altern-ating current(AC)-line filtering for stabilizing voltage,sup-pressing harmonics,and improving power quality.However,traditional aluminum electrolytic capacitors(AECs)suffer from a large size,short lifespan,low power density,and poor reliability,which limits their use.In contrast,ultrafast supercapacitors(SCs)are ideal for replacing commercial AECs because of their extremely high power densities,fast charging and discharging,and excellent high-frequency re-sponse.We review the design principles and key parameters for ultrafast supercapacitors and summarize research pro-gress in recent years from the aspects of electrode materials,electrolytes,and device configurations.The preparation,structures,and frequency response performance of electrode materials mainly consisting of carbon materials such as graphene and carbon nanotubes,conductive polymers,and transition metal compounds,are focused on.Finally,future research directions for ultrafast SCs are suggested. 展开更多
关键词 Ultrafast supercapacitors AC-line filtering Electrode materials Electrolytes Cell configuration design
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基于配位聚合物框架的微超级电容器 被引量:2
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作者 陈彧 《功能高分子学报》 CAS CSCD 北大核心 2020年第2期105-107,共3页
硅基微型超级电容器(MSCs)是小型电子产品中重要的硅基兼容电源备份。尽管具有巨大的优势,但MSCs需要苛刻的处理条件,当过滤交流电的波纹时,通常表现得像电阻一样。上海交通大学介熵物质研究室庄小东教授和冯新亮教授等报道了一种简便... 硅基微型超级电容器(MSCs)是小型电子产品中重要的硅基兼容电源备份。尽管具有巨大的优势,但MSCs需要苛刻的处理条件,当过滤交流电的波纹时,通常表现得像电阻一样。上海交通大学介熵物质研究室庄小东教授和冯新亮教授等报道了一种简便的基于薁基桥联的配位聚合物框架(PiCBA)的MSCs。此类MSCs表现出优异的交流线路滤波性能(120 Hz时的阻抗相位角为-73°),电阻电容时间常数较小,约为0.83 ms。PiCBA具有良好的载流子迁移率(5×10^-3 cm^2/(V·s))、薁基骨架的永久偶极矩和PiCBA的低带隙,由这种材料制备的MSCs可在50 mV/s下实现34.1 F/cm^3的高比电容和1 323 W/cm^3的高体积功率密度。 展开更多
关键词 交流线路滤波 配位聚合物框架 微型超级电容器
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