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Non-Hydrothermal Synthesis of 1D Nanostructured Manganese- Based Oxides: Effect of Cation Substitution on the Electrochemical Performance of Nanowires

机译:一维纳米结构锰基氧化物的非水热合成:阳离子取代对纳米线电化学性能的影响

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The synthesis of cation-substituted 1D manganese oxide nanowires is achieved via a non-hydrothermal oxidation reaction using a solid-state precursor and conventional glassware. By changing the reaction conditions and precursor composition, it is possible to control the crystal structure and chemical composition of the resulting 1D nanostructured materials. The nanowires are found to exhibit promising electrochemical properties as cathode materials in lithium secondary batteries; moreover, the electrochemical properties of the nanowires can be improved by the partial replacement of Mn with Cr~(3+) cations. The measurements strongly suggest that the cation composition of the nanostructured metal oxides is very important for optimizing their electrode performance. The non-hydrothermal solution synthesis method presented here provides an effective composition-tailored approach for the fabrication of large quantities of 1D manganese oxide nanowires.
机译:阳离子取代的一维氧化锰纳米线的合成是通过使用固态前体和常规玻璃器皿的非水热氧化反应实现的。通过改变反应条件和前体组成,可以控制所得的一维纳米结构材料的晶体结构和化学组成。发现纳米线作为锂二次电池中的阴极材料表现出令人鼓舞的电化学性能。此外,可以通过用Cr〜(3+)阳离子部分取代Mn来改善纳米线的电化学性能。这些测量强烈表明,纳米结构金属氧化物的阳离子组成对于优化其电极性能非常重要。本文介绍的非水热溶液合成方法为大量的一维氧化锰纳米线的制造提供了一种有效的针对成分的方法。

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