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Heteroatom–doped hollow carbon microspheres based on amphiphilic supramolecular vesicles and highly crosslinked polyphosphazene for high performance supercapacitor electrode materials

机译:基于两亲性超分子囊泡和高度交联的聚磷腈的杂原子掺杂空心碳微球,用于高性能超级电容器电极材料

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摘要

Hybrid hollow polymeric microspheres (HPMSs) are synthesized by encapsulating the supramolecular vesicles with polyphosphazene through a rapid one-step polycondensation reaction. Subsequent carbonization treatments of the HPMSs lead to corresponding hollow carbon microspheres (HCMSs) with well-preserved geometry. The sizes of HPMSs and HCMSs are controlled by the vesicles, which is directly determined by the feeding ratio of the assembly units. Electrodes based on HCMSs showed a specific capacitance of 314.6 F/g at a current density of 0.2 A/g in 6 M KOH electrolyte, 180.0 F/g at a current density of 30 A/g, and high stability of 98.2% of capacity retention after 2000 cycles. Both the high surface area and high heteroatoms level of HCMSs contribute to the excellent capacitive performance. Meanwhile, the hollow carbon structure ensured the satisfactory capacitive performance by increasing utilization efficiency of the surface area as well as achieving short diffusion paths for electrolyte ions.
机译:杂化的空心聚合物微球(HPMS)是通过快速的一步缩聚反应用聚磷腈包裹超分子囊泡而合成的。 HPMS的后续碳化处理导致相应的中空碳微球(HCMS)具有良好的几何形状。 HPMS和HCMS的大小由囊泡控制,囊泡直接由组装单元的进料比确定。基于HCMS的电极在6 M KOH电解质中的电流密度为0.2 A / g时显示出314.6 F / g的比电容,在30 A / g的电流密度下显示180.0 F / g的比容,高稳定性为容量的98.2% 2000次循环后保留。 HCMS的高表面积和高杂原子水平均有助于出色的电容性能。同时,中空碳结构通过提高表面积的利用效率以及实现电解质离子的短扩散路径来确保令人满意的电容性能。

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