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首页> 外文期刊>Advanced Functional Materials >Alternative-Ultrathin Assembling of Exfoliated Manganese Dioxide and Nitrogen-Doped Carbon Layers for High-Mass-Loading Supercapacitors with Outstanding Capacitance and Impressive Rate Capability
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Alternative-Ultrathin Assembling of Exfoliated Manganese Dioxide and Nitrogen-Doped Carbon Layers for High-Mass-Loading Supercapacitors with Outstanding Capacitance and Impressive Rate Capability

机译:用于突出的锰二氧化锰和氮掺杂碳层的替代 - 超掺杂碳层,具有出色的电容和令人兴奋的速率能力

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Manganese dioxide (MnO2) materials have received much attention as promising pseudocapacitive materials owing to their high theoretical capacitance and natural abundance. Unfortunately, the charge storage performance of MnO2 is usually limited to commercially available mass loading electrodes because of the significantly lower electron and ion migration kinetics in thick electrodes. Here, an alternatively assembled 2D layered material consisting of exfoliated MnO2 nanosheets and nitrogen-doped carbon layers for ultrahigh-mass-loading supercapacitors without sacrificing energy storage performance is reported. Layered birnessite-type MnO2 is efficiently exfoliated and intercalated by a carbon precursor of dopamine using a fluid dynamic-induced process, resulting in MnO2/nitrogen-doped carbon (MnO2/C) materials after self-polymerization and carbonization. The alternatively stacked and interlayer-expanded structure of MnO2/C enables fast and efficient electron and ion transfer in a thick electrode. The resulting MnO2/C electrode shows outstanding electrochemical performance at an ultrahigh mass loading of 19.7 mg cm(-2), high gravimetric and areal capacitances of 480.3 F g(-1) and 9.4 F cm(-2) at 0.5 mA cm(-2), and rapid charge/discharge capability of 70% capacitance retention at 40 mA cm(-2). Furthermore, asymmetric supercapacitor based on high-mass-loading MnO2/C can deliver an extremely high energy of 64.2 Wh kg(-1) at a power density of 18.8 W kg(-1) in an aqueous electrolyte.
机译:由于其高理论电容和自然丰度,二氧化碳(MNO2)材料作为承诺的假散态材料得到了很大的关注。不幸的是,MnO2的电荷存储性能通常限于市售质量负载电极,因为厚电极中的电子和离子迁移动力学显着下降。这里,报道了一种可选地组装的2D层状材料,其由未牺牲能量储存性能的超高质量加载超级电容器的剥离MnO2纳米晶片和氮掺杂碳层组成。通过使用流体动力诱导的方法,通过多巴胺的碳前体有效地剥离和嵌入层状体育腺苷酸型MnO 2,从而在自聚合和碳化后产生MnO 2 /氮掺杂碳(MnO 2 / C)材料。可替代地堆叠的MNO2 / C的叠层和层间结构使得能够快速高效的电子和离子传递在厚电极中。得到的MNO2 / C电极在480.3fg(-1)和9.4 f cm(-2)的超高批量负载下,在u10.3f g(-1)和9.4 f cm(-2)的超高质量负载下,在0.5 mA cm( -2),快速充电/放电能力为40 mA cm(-2)的电容保留70%。此外,基于高质量加载MnO2 / C的不对称超微涂物可以在水性电解质中以18.8Wkg(-1)的功率密度为64.2phkg(-1)的极高能量。

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