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Controllable synthesis, characterization, and electrochemical properties of manganese oxide nanoarchitectures

机译:氧化锰纳米结构的可控合成,表征和电化学性能

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Flowerlike manganese oxide microspheres and cryptomelane-type manganese oxide nanobelts were selectively synthesized by a simple decomposition of KMnO_4 under mild hydrothermal conditions without using template or cross-linking reagents. The effect of varying the hydrothermal times and temperatures on the nanostructure, morphology, compositional, and electrochemical properties of the obtained manganese oxides was investigated. X-ray diffraction (XRD), scanning electron microscopy (SEM), and transmission electron microscopy (TEM) studies showed that the flowerlike manganese oxide microspheres could be obtained at relatively low hydrothermal temperatures, while high hydrothermal temperatures were favorable for the formation of cryptomelane-type manganese oxide nanobelts. A morphology and crystalline evolution of the nanostructures was observed as the hydrothermal temperature was increased from 180 to 240℃. On the basis of changing the temperatures and hydrothermal reaction times, the formation mechanism of cryptomelane-type manganese oxide nanobelts is discussed. Cyclic voltammetry (CV) was used to evaluate the electrochemical properties of the obtained manganese oxide nanostructures, and the results show that the electrochemical properties depend on their shape and crystalline structure. This easily controllable, template-free, and environmentally friendly method has the potential for being used in syntheses of manganese oxide nanomaterials with uniform morphologies and crystal structures.
机译:通过在温和的水热条件下通过简单分解KMnO_4而不使用模板或交联试剂,选择性地合成了花状氧化锰微球和隐密胺型氧化锰纳米带。研究了改变水热时间和温度对所得锰氧化物的纳米结构,形貌,组成和电化学性能的影响。 X射线衍射(XRD),扫描电子显微镜(SEM)和透射电子显微镜(TEM)研究表明,在较低的水热温度下可以获得花状的锰氧化物微球,而较高的水热温度有利于隐花蜜烷的形成。型氧化锰纳米带。随着水热温度从180℃升高到240℃,观察到了纳米结构的形貌和晶体演化。在改变温度和水热反应时间的基础上,探讨了隐锰烷型锰氧化物纳米带的形成机理。用循环伏安法(CV)评价所获得的锰氧化物纳米结构的电化学性能,结果表明,电化学性能取决于其形状和晶体结构。这种易于控制,无模板且对环境无害的方法具有用于合成具有均匀形态和晶体结构的氧化锰纳米材料的潜力。

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