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Facile One-Pot Synthesis of Bimetallic Co/Mn-MOFs@Rice Husks and its Carbonization for Supercapacitor Electrodes

机译:Co / Mn-MOFs @ Rice稻壳双金属的便捷一锅合成及其超级电容器电极的碳化

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摘要

Novel hybrid nanomaterials comprising metal-organic framework compounds carbonised in the presence of biomass material derived from rice husk have been investigated as a new class of sustainable supercapacitor materials for electrochemical energy storage. Specifically, two synthetic routes were employed to grow Co/Mn metal-organic framework compounds in the channels of rice husks, which had been activated previously by heat treatment in air at 400 °C to produce a highly porous network. Pyrolysis of these hybrid materials under nitrogen at 700 °C for 6 h produced metal-containing phases within the nanocarbon, comprising intimate mixtures of Co, MnO and CoMn2O4. The materials thus produced are characterized in detail using a range of physical methods including XRD, electron microscopy and X-ray photoelectron spectroscopy. The synthetic pathway to the metal-organic framework compound is shown to influence significantly the physical properties of the resulting material. Electrochemical evaluation of the materials fabricated revealed that higher specific capacitances were obtained when smaller crystallite sized bimetallic Co/Mn-MOFs were grown inside the rice husks channels compared to larger crystallite sizes. This was in-part due to increased metal oxide loading into the rice husk owing to the smaller crystallite size as well as the increased pseudocapacitance exhibited by the smaller crystallite sizes and increased porosity.
机译:已经研究了包含在稻壳衍生的生物质材料存在下碳化的金属-有机骨架化合物的新型杂化纳米材料,作为用于电化学能量存储的一类新型可持续超级电容器材料。具体来说,采用两种合成途径在稻壳的通道中生长Co / Mn金属-有机骨架化合物,这些通道先前已通过在400°C的空气中进行热处理而活化,从而形成了高度多孔的网络。这些杂化材料在氮气中在700°C的高温下热解6h,在纳米碳内产生含金属的相,该相包含Co,MnO和CoMn2O4的紧密混合物。使用多种物理方法,包括XRD,电子显微镜和X射线光电子能谱,对由此生产的材料进行了详细表征。已显示通向金属-有机骨架化合物的合成途径会显着影响所得材料的物理性质。对所制造材料的电化学评估表明,与较大的晶粒尺寸相比,当在稻壳通道内生长较小的晶粒尺寸的双金属Co / Mn-MOFs时,可获得较高的比电容。这部分是由于较小的微晶尺寸以及由于较小的微晶尺寸和增加的孔隙率所表现出的拟电容的增加,金属氧化物装入稻壳中的增加。

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