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Synthesis of hierarchically porous carbon spheres by an emulsification-crosslinking method and their application in supercapacitors

机译:通过乳化交联法合成分层多孔碳球及其在超级电容器中的应用

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Porous carbon materials have greatly developed as promising electrode materials for electric double-layer capacitors (EDLCs). Herein, hierarchically porous carbon spheres (HPCSs) were synthesized by using chitosan, glutaraldehyde and KOH as the carbon source, crosslinking agent and chemical activating agent, respectively. The morphology of the HPCSs was characterized by scanning electron microscopy and transmission electron microscopy, while the porous structural features, including high specific surface area (1974 m ~(2) g ~(?1) ), total pore volume (2.52 cm ~(3) g ~(?1) ) and wide pore-size distribution, were measured by nitrogen sorption technology. Electrochemical tests in a three-electrode cell indicated that the prepared HPCSs displayed excellent capacitive performances (328 F g ~(?1) ), and good cycling stability with approximately 9% of capacitance reduction after 10?000 times of cycling. Moreover, the electrochemical properties characterized in a two-electrode system indicated that the specific capacitance is 66.1 F g ~(?1) at a current density of 0.5 A g ~(?1) , and the energy density is 8.3 W h kg ~(?1) at a power density of 6 kW kg ~(?1) , demonstrating that the obtained HPCSs are a potential electrode material and met well the practical requirement for an EDLC.
机译:多孔碳材料作为用于电双层电容器(EDLC)的承诺电极材料。这里,通过使用壳聚糖,戊二醛和KOH作为碳源,交联剂和化学活化剂,合成分层多孔碳球(HPCS)。通过扫描电子显微镜和透射电子显微镜表征HPCS的形态,而多孔结构特征,包括高比表面积(1974m〜(2)g〜(α1)),总孔体积(2.52cm〜( 3)G〜(α1))和宽孔径分布通过氮吸附技术测量。三电极电池中的电化学试验表明,制备的HPCSS显示出优异的电容性能(328f g〜(α1)),循环稳定性良好的循环稳定性,在循环10次循环后大约9%的电容降低。此外,在两个电极系统中表征的电化学性质表明,特定电容在电流密度为0.5Ag〜(α1),能量密度为8.3WH kg〜 (α1)以6 kg kg〜(α1)的功率密度,证明所获得的HPCS是潜在的电极材料,并妥善满足EDLC的实际要求。

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