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Manganese Dioxide Supported on Porous Biomorphic Carbons as Hybrid Materials for Energy Storage Devices

机译:多孔生物质炭上负载的二氧化锰作为储能装置的杂化材料

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A facile and low-cost method has been employed to fabricate MnO2/C hybrid materials for use as binder-free electrodes for supercapacitor applications. Biocarbon monoliths were obtained through pyrolysis of beech wood, replicating the microstructure of the cellulosic precursor, and serve as 3D porous and conductive scaffolds for the direct growth of MnO, nanosheets by a solution method. Evaluation of the experimental results indicates that a homogeneous and uniform composite material made of a carbon matrix exhibiting ordered hierarchical porosity and MnO, nanosheets with a layered nanocrystalline structure is obtained. The tuning of the MnO2 content and crystallite size via the concentration of KMnO4 used as impregnation solution allows to obtain composites that exhibit enhanced electrochemical behavior, achieving a capacitance of 592 F g(-1) in electrodes containing 3 wt % MnO2 with an excellent cyclic stability. The electrode materials were characterized before and after electrochemical testing.
机译:已经采用一种简便且低成本的方法来制造MnO2 / C杂化材料,以用作超级电容器应用中的无粘合剂电极。生物碳整料是通过榉木的热解获得的,复制了纤维素前体的微观结构,并用作3D多孔和导电支架,用于通过溶液法直接生长MnO纳米片。实验结果的评估表明,获得了由碳基质制成的均匀且均匀的复合材料,该碳基质具有有序的分层孔隙率和MnO纳米颗粒,具有层状纳米晶体结构。通过用作浸渍溶液的KMnO4的浓度来调节MnO2含量和微晶尺寸,可以得到表现出增强的电化学行为的复合材料,在含有3 wt%MnO2的电极中具有592 F g(-1)的电容,并具有出色的循环性稳定性。在电化学测试之前和之后对电极材料进行表征。

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