首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Two for One: A Biomass Strategy for Simultaneous Synthesis of MnO2 Microcubes and Porous Carbon Microcubes for High Performance Asymmetric Supercapacitors
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Two for One: A Biomass Strategy for Simultaneous Synthesis of MnO2 Microcubes and Porous Carbon Microcubes for High Performance Asymmetric Supercapacitors

机译:两个用于一个:一种用于同时合成MNO2微长管和多孔碳微电影的生物质策略,用于高性能不对称超级电容器

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摘要

The capacitive properties of asymmetric supercapacitors (ASCs) are inseparable from the development of anode and cathode materials, which usually require high accessible surface area and uniform porous distribution. Herein, a simple and economical "two for one" strategy is introduced for the simultaneous synthesis of microscale porous MnO2 microcubes (PMMs) and porous carbon microcubes (PCMs) derived from a single precursor cubic MnCO3/biocarbon (CM) which are prepared by natural agaric. Benefiting from a high specific surface area, delicate construction, and adequate mesoporous distribution, PCMs and PMMs could help to realize fast ion diffusion and easy ion accessibility. As expected, microscale PCM anode and PMM cathode materials exhibit superior capacitive performances, including high specific capacitance and impressive rate performance in a three-electrode system, respectively. Moreover, the assembled ASCs physical device PCM//PMM presents a high energy density (46.1 Wh kg(-1) at 1.0 kW kg(-1)) and an excellent long-term cyclability (91% capacitance retention after 10 000 cycles at 1.0 A g(-1)). Therefore, the two-for-one strategy not only provided a simple and effective method to prepare high-performance electrode materials for ASCs, but also it is of great significance for natural biomass to achieve multidirectional applications and effectively replace commercial carbon sources from fossil fuels.
机译:不对称超级电容器(ASCS)的电容性质与阳极和阴极材料的发育不可分割,这通常需要高可接近的表面积和均匀的多孔分布。在此,引入了通过自然制备的单个前体立方MNCO3 /生物羰(CM)同时合成微观多孔MNO2微长(PMMS)和多孔碳微电池(PCM)的简单且经济的“两种”策略。伞菌。受益于高比表面积,精致的结构和足够的中孔分配,PCM和PMM可以有助于实现快速离子扩散和易于离子可接近性。正如预期的,微观PCM阳极和PMM阴极材料分别表现出优异的电容性能,包括在三个电极系统中具有高特定电容和令人印象深刻的速率性能。此外,组装的ASCS物理设备PCM // PMM呈现高能量密度(46.1WH kg(-1),在1.0 kW kg(-1)),优异的长期可行性(在10 000周期后91%电容保留1.0 g(-1))。因此,两种策略不仅提供了一种简单有效的方法来制备ASC的高性能电极材料,而且对天然生物质实现多向应用并有效地取代来自化石燃料的商业碳源具有重要意义。

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