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基于静力衡量法和光学法的超微容量测量方法对比分析 被引量:2
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作者 刘鑫行 王思贤 +2 位作者 孙斌 张竟月 王金涛 《计量学报》 CSCD 北大核心 2022年第10期1250-1255,共6页
分别使用静力衡量法和光学法对超微容量进行测量。光学法测量中,按照分光原理分别设计了以时域分光和空域分光为基础的测量系统。2套光学测量系统在1μL和10μL的容量测量数据分别为0.967μL和0.929μL以及9.976μL和9.729μL;时域分光... 分别使用静力衡量法和光学法对超微容量进行测量。光学法测量中,按照分光原理分别设计了以时域分光和空域分光为基础的测量系统。2套光学测量系统在1μL和10μL的容量测量数据分别为0.967μL和0.929μL以及9.976μL和9.729μL;时域分光测量系统在1μL和10μL测量点重复性为3.2%和2.54%,空域分光测量系统为3.6%和2.02%。2套光学系统相比,时域分光系统的探测器灵敏度更好,在低浓度超微容量测量中能检测到更多光强信息。光学法与静力衡量法获得了相同的结论,证明了光学法在超微容量测量领域的可行性。光学法与静力衡量法相比,光学法针对液体蒸发的处理方法更加简单,光学元件的设计可以有效减小蒸发的影响。 展开更多
关键词 计量学 超微容量 时域分光 空域分光 静力衡量法
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Enhancing energy density in planar micro-supercapacitors:The role of few-layer graphite/carbon black/NiCo_(2)O_(4) composite materials
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作者 ZHANG Wanggang HUANG Lei +3 位作者 WANG Menghu WANG Jian WEI Aili LIU Yiming 《燃料化学学报(中英文)》 北大核心 2025年第5期646-662,共17页
The advancement of planar micro-supercapacitors(PMSCs)for micro-electromechanical systems(MEMS)has been significantly hindered by the challenge of achieving high energy and power densities.This study addresses this is... The advancement of planar micro-supercapacitors(PMSCs)for micro-electromechanical systems(MEMS)has been significantly hindered by the challenge of achieving high energy and power densities.This study addresses this issue by leveraging screen-printing technology to fabricate high-performance PMSCs using innovative composite ink.The ink,a synergistic blend of few-layer graphene(Gt),carbon black(CB),and NiCo_(2)O_(4),was meticulously mixed to form a conductive and robust coating that enhanced the capacitive performance of the PMSCs.The optimized ink formulation and printing process result in a micro-supercapacitor with an exceptional areal capacitance of 18.95 mF/cm^(2)and an areal energy density of 2.63μW·h/cm^(2)at a current density of 0.05 mA/cm^(2),along with an areal power density of 0.025 mW/cm^(2).The devices demonstrated impressive durability with a capacitance retention rate of 94.7%after a stringent 20000-cycle test,demonstrating their potential for long-term applications.Moreover,the PMSCs displayed excellent mechanical flexibility,with a capacitance decrease of only 3.43%after 5000 bending cycles,highlighting their suitability for flexible electronic devices.The ease of integrating these PMSCs into series and parallel configurations for customized power further underscores their practicality for integrated power supply solutions in various technologies. 展开更多
关键词 graphite/carbon black composite NiCo_(2)O_(4) screen printing planar micro-supercapacitor energy density mechanical flexibility
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