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废弃刨花板制备含氮活性炭超级电容器电极 被引量:1
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作者 任汝全 金小娟 《东北林业大学学报》 CAS CSCD 北大核心 2015年第12期93-98,共6页
以废弃刨花板为原料,KOH为活化剂制备活性炭,探讨活化温度、活化剂用量对活性炭的影响。通过X射线光电子能谱对所得活性炭结构进行表征,采用氮气吸附法和元素分析对其比表面积、孔隙结构和元素组成进行分析。制备双电层电容器,测试含N... 以废弃刨花板为原料,KOH为活化剂制备活性炭,探讨活化温度、活化剂用量对活性炭的影响。通过X射线光电子能谱对所得活性炭结构进行表征,采用氮气吸附法和元素分析对其比表面积、孔隙结构和元素组成进行分析。制备双电层电容器,测试含N活性炭电极的恒流充放电曲线、倍率特性、伏安特性和阻抗特性,分析电化学性能。结果表明,活化温度为850℃,m(碱)∶m(碳)=2.5∶1时,BET比表面积和总孔容积最大,分别达到1 083 m^2/g和0.862 cm^3/g;当活化温度为750℃,碱碳比为2.5∶1时,电化学性能最优,其质量比电容量在0.05 A/g的电流密度下达到184 F/g。 展开更多
关键词 废弃刨花板 活性炭 KOH 质量比电容
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A new approach to produce polystyrene monoliths by gelation and capillary shrinkage
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作者 Dewang Li Yaqian Deng +11 位作者 Jingyi Xia Zhitan Wu Tongxin Shang Pei Li Junwei Han Ying Tao Quan-Hong Yang Nanoyang Group State Key Laboratory of Chemical Engineering School of Chemical Engineering and Technology Tianjin University Tianjin 《Science China Materials》 SCIE EI CAS CSCD 2021年第9期2272-2279,共8页
Polymeric monoliths are of great interest in a variety of applications.A new gelation approach to produce a mechanically stable polystyrene(PS)gel directly from its microemulsion is reported.To produce a PS gel,the as... Polymeric monoliths are of great interest in a variety of applications.A new gelation approach to produce a mechanically stable polystyrene(PS)gel directly from its microemulsion is reported.To produce a PS gel,the as-prepared microemulsion is first demulsified by adding selected watermiscible organic solvents.The small PS latex particles liberated from the surfactant are assembled into a piece of bulk material at an appropriate temperature with a high degree of entanglement of the polymer chains.It is found that the d2 T/ηvalue is an important parameter to evaluate the gelation ability of the organic solvents and helps determine the gelation conditions.Finally,PS monoliths are obtained by capillary drying and their pore structures can be effectively tuned by changing the gelation time and the amount of solvent exchanged with water.This allows the controlled preparation of bulk PS artefacts with densities in the range of 0.06 to 1.14 g cm^(-3).This simple method of PS monolith production avoids the use of shaping tools or chemical templates,needs less energy,and is a promising alternative approach to design either integrated porous or compact polymer materials. 展开更多
关键词 POLYSTYRENE monolith DEMULSIFICATION GELATION capillary shrinkage
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