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Synthesis of different CuO nanostructures by a new catalytic template method as anode materials for lithium-ion batteries

机译:新型催化模板法合成不同CuO纳米结构作为锂离子电池负极材料

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摘要

CuO powders composed of different rod-like clusters or dandelion-like nanospheres are prepared by a low-temperature thermal decomposition process of Cu(OH)2 precursors, which are obtained via a catalytic template method. A tentative mechanism is proposed to explain the formation and transformation of different Cu(OH)2 nanostructures. X-ray diffraction, thermogravimetric analysis, scanning electron microscopy, field-emission scanning electron microscopy, transmission electron microscopy, infrared spectra analysis, Brunauer-Emmett-Teller measurements, and galvanostatic cell cycling are employed to characterize the structures and electrochemical performance of these CuO samples. The results show that these CuO samples obtained after 500 °C calcination have a stable cycling performance with a reversible capacity of over 587 mA h g-1 after 50 cycles. The dandelion-like CuO electrode shows the best rate performance with a high capacity of 511 mA h g-1 at 4C.
机译:通过催化模板法获得的Cu(OH)2前体的低温热分解过程,制备了由不同的棒状簇或蒲公英样纳米球组成的CuO粉。提出了一种初步的机理来解释不同Cu(OH)2纳米结构的形成和转变。使用X射线衍射,热重分析,扫描电子显微镜,场发射扫描电子显微镜,透射电子显微镜,红外光谱分析,Brunauer-Emmett-Teller测量和恒电流循环来表征这些CuO的结构和电化学性能样品。结果表明,在500°C煅烧后获得的这些CuO样品具有稳定的循环性能,经过50个循环后可逆容量超过587 mA h g-1。像蒲公英一样的CuO电极在4C时具有511 mA h g-1的高容量,显示出最佳的速率性能。

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