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首页> 外文期刊>RSC Advances >Template-free synthesis of nitrogen doped carbon materials from an organic ionic dye (murexide) for supercapacitor application
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Template-free synthesis of nitrogen doped carbon materials from an organic ionic dye (murexide) for supercapacitor application

机译:由有机离子染料(莫来塞德)无模板合成氮掺杂碳材料用于超级电容器

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The present study describes a template-free single step carbonization route to prepare hierarchically structured nitrogen-doped carbon materials (NCMs) by using an organic ionic dye (OID), ammonium purpurate (murexide). These NCMs exhibited moderate specific surface area (307 m2 g?1 for NCM(MDE)-900) and hierarchical macro/meso/microporous structures with abundant nitrogenous functionalities that contributed towards the high specific capacitance displayed by pseudocapacitive contribution. In particular, the NCM(MDE)-800 displayed superior specific capacitance (222 F g?1 at 3 A g?1) and excellent cyclic stability of ~10?000 cycles at 10 A g?1 in 1 M 1.0 M H2SO4(aq). The material prepared at higher temperature, viz. NCM(MDE)-900, exhibited high rate capability at 50 A g?1, which is 92% of their specific capacitances at 10 A g?1. Further systematic investigations of NCM(MDE)-800 in three different electrolytes, viz. 1.0 M H2SO4(aq), 6 M KOH(aq) and 0.5 M Na2SO4(aq), revealed that 1.0 M H2SO4(aq) is a promising electrolyte for achieving good specific capacitance, high capacitive retention and long term cyclic stability, which might have its origins in the formation of ionic interactions between the active protons in 1.0 M H2SO4(aq) and the alpha carbon atoms with Lewis basic character next to the nitrogen in these NCMs.
机译:本研究描述了一种无模板的单步碳化路线,该路线通过使用有机离子染料(OID),紫铵(murexide)来制备分层结构的氮掺杂碳材料(NCM)。这些NCM表现出中等的比表面积(对于NCM 为307 m 2 g ?1 (MDE) -900)和具有丰富含氮功能的分层宏/介孔/微孔结构,这些结构可通过伪电容贡献显示出较高的比电容。特别是NCM (MDE) -800表现出优异的比电容(222 F g ?1 在3一个g ?1 ),在10 A g ?1 的条件下,具有约10?000个循环的出色循环稳定性1 M 1.0 MH 2 SO 4(aq) 。在较高温度下制备的材料,即。 NCM (MDE) -900,在50 A g ?1 ,这是它们在10 A g ?1 时的比电容的92%。 NCM (MDE) -small在三种不同的电解质 viz。 1.0 MH 2 中的进一步系统研究> SO 4(aq) ,6 M KOH (aq) 和0.5 M Na < small> 2 SO 4(aq) ,显示1.0 MH 2 < / small> SO 4(aq) 是一种有希望的电解质,可实现良好的比电容,高电容保持率和长期循环稳定性,这可能源于形成1.0 MH 2 SO 4(aq) 中的活性质子与带有Lewis的α碳原子之间的离子相互作用这些NCM中氮旁边的基本特征。

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