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Experimental dataset on tailoring hematite nanodots embedded nitrogen-rich carbon layers for lithium-ion batteries

机译:实验数据集剪裁赤铁矿纳米型嵌入式氮碳层锂离子电池

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The experimental data presented are related to the research article entitled “Nitrogen self-doped carbon sheets anchored hematite nanodots as efficient Li-ion storage anodes through pseudocapacitance mediated redox process” [1]. In brief, the synthesis of nanodotted hematite Fe2O3embedded in nitrogen-rich carbon layers is achieved through a surfactant-less self-assembly process and it is employed as anodes for Li-ion batteries. The dataset presented depicts the effect of temperature on the phase formation and morphology of the Fe2O3nanodots and their influence on the electrochemical performance by constructing as anode materials for lithium-ion batteries. Representative XRD patterns, FE-SEM and FE-TEM micrographs, electrochemical potential profiles, and cycling performances for anode materials synthesized by different thermal treatment process are investigated. The shared datasets contribute to clarify the formation temperature and morphological evolution of Fe2O3into nanodots.
机译:所提出的实验数据与题为“氮自掺杂碳板锚定的赤铁矿纳米蛋白作为高效的锂离子储存阳极通过假偶联介导的氧化还原过程”[1]的实验数据有关。简而言之,通过表面活性剂的自组装方法实现纳米型含氮含量Fe2O3embedded的含氮碳层的合成,并且它用作锂离子电池的阳极。所提出的数据集描述了温度对Fe2O3Nanodots的相形成和形态的影响及其通过构造为锂离子电池的阳极材料来对电化学性能的影响。研究了通过不同热处理过程合成的阳极材料的代表性XRD图案,Fe-SEM和FE-TEM显微照片,电化学电位谱和循环性能。共享数据集有助于阐明Fe2O3Into纳米蛋白的形成温度和形态学。

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