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首页> 外文期刊>RSC Advances >P/N/O co-doped carbonaceous material based supercapacitor with voltage up to 1.9 V in aqueous electrolyte
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P/N/O co-doped carbonaceous material based supercapacitor with voltage up to 1.9 V in aqueous electrolyte

机译:P / N / O共掺杂碳质材料基超级电容器,在水性电解质中的电压高达1.9 V

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摘要

Phosphorus, nitrogen and oxygen co-doped carbonaceous materials (PNODC) were facilely prepared by pyrolyzing phosphorus, nitrogen and oxygen-rich phytic acid doped polyanilines. ICP analysis and elemental analysis demonstrate that the maximum phosphorus content of the as-prepared PNODC reaches 6.02 wt% with the total heteroatom (phosphorus, nitrogen and oxygen) content up to 32.76 wt%. The symmetric supercapacitor built from PNODC could be operated at a very high working voltage of 1.9 V. A maximum energy density of 21.8 W h kg(-1) is achieved at a power density of 238 W kg(-1) and a voltage load of 1.9 V. The excellent electrochemical performance can be attributed to the high heteroatom content, the synergetic effect of phosphorus and nitrogen/oxygen co-doping and the protection of abundant heteroatom functionalities on the surface of the carbon electrodes.
机译:通过热解磷,氮和氧丰富的植酸掺杂的聚苯胺,可以轻松地制备磷,氮和氧共掺杂的碳质材料(PNODC)。 ICP分析和元素分析表明,所制备的PNODC的最大磷含量达到6.02 wt%,总杂原子(磷,氮和氧)含量高达32.76 wt%。由PNODC构建的对称超级电容器可以在1.9 V的很高工作电压下工作。在238 W kg(-1)的功率密度和电压负载下,可实现21.8 W h kg(-1)的最大能量密度1.9V。出色的电化学性能可归因于高杂原子含量,磷和氮/氧共掺杂的协同效应以及碳电极表面上丰富的杂原子功能的保护。

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