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Synthesis of Mn-doped α-Ni(OH)2 nanosheets assisted by liquid-phase laser ablation and their electrochemical properties

机译:液相激光烧蚀辅助锰掺杂的α-Ni(OH)2纳米片的制备及其电化学性能

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We designed a new strategy, namely, the laser ablation of a target material in an aqueous ionic solution, to prepare Mn-doped Ni(OH)2 nanosheets based on reactions between the pulsed laser-induced plasma plume of Mn and the surrounding NiCI2 solution. The crystalline phase, morphology and structure of the as-derived products are characterised by X-ray diffraction, field-emission scanning electron microscopy, transmission electron microscopy and X-ray photoelectron spectroscopy. Results indicate the hierarchical assembly of numerous tiny nanosheet building blocks into a Mn-doped α-Ni(OH)2 spherical structure. Importantly, the positive electrode made of Mn-doped α-Ni(OH)2 nanosheets exhibits a high specific capacitance of ~1000 F g~(-1) under a current density of 5 A g~(-1), concurrently possessing excellent cycling ability. This novel strategy may offer researchers an alternative for designing interesting solid targets and ionic solutions towards the fabrication of other new nanostructures for fundamental research and potential applications.
机译:我们设计了一种新的策略,即在离子水溶液中对目标材料进行激光烧蚀,以基于脉冲激光诱导的Mn等离子体羽流与周围的NiCl2溶液之间的反应来制备Mn掺杂的Ni(OH)2纳米片。 。通过X射线衍射,场发射扫描电子显微镜,透射电子显微镜和X射线光电子能谱表征衍生产物的结晶相,形态和结构。结果表明,许多微小的纳米片结构块均已分层组装为Mn掺杂的α-Ni(OH)2球形结构。重要的是,由Mn掺杂的α-Ni(OH)2纳米片制成的正极在5 A g〜(-1)的电流密度下具有〜1000 F g〜(-1)的高比电容,同时具有优异的电容量。循环能力。这种新颖的策略可能会为研究人员提供一种替代方案,用于设计有趣的固体靶标和离子溶液,以制造用于基础研究和潜在应用的其他新纳米结构。

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