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Filter paper templated interconnected nanocrystalline LiMn2O4 with high coulombic efficiency and rate capability

机译:具有高库仑效率和速率能力的滤纸模板互连纳米晶LiMn2O4

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摘要

A novel filter paper templating method has been developed to prepare nanocrystalline LiMn2O4. Whatman 42 filter paper impregnated with the precursor gel produces ultrafine powder (80-100 nm) when calcined at 800 °C. The structure and morphology of the powder and the template have been studied in detail by X-ray diffraction (XRD) and field emission scanning electron microscopy (FESEM). A single phase cubic spinel with interconnected powder morphology is found. The electrochemical properties have been studied using 2032 coin type cells in the potential window of 3.4 to 4.5 V versus Li/Li~+. Sharp oxidation-reduction peaks at 4.09/3.90V and 4.22/4.04V in the cyclic voltagram indicate high crystallinity and good reversibility of the cathode. A typical cell shows an initial discharge capacity of 97 mAh/g with ~98% columbic efficiency. Rate capability study of the synthesized cathode has been performed by cycling the cell for 130 cycles at different current densities (0.1-1.5 mA/cm2) and it is observed that 80-100% retention of initial capacity is possible when cycled at 0.1-0.6 mA/cm2. A capacity fading of only 0.03 mAh/g per cycle is observed even at 1.5 mA/cm2 (8C). Thus, we have shown that simple filter paper templating technique can produce nanocrystalline LiMn2O4 with high coulombic efficiency (100-95%) and rate capability.
机译:已开发出一种新颖的滤纸模板方法来制备纳米晶LiMn2O4。当在800°C下煅烧时,浸渍有前体凝胶的Whatman 42滤纸会产生超细粉末(80-100 nm)。通过X射线衍射(XRD)和场发射扫描电子显微镜(FESEM)详细研究了粉末和模板的结构和形态。发现具有互连粉末形态的单相立方尖晶石。已经使用2032个硬币型电池在相对于Li / Li +的3.4至4.5V的电势窗中研究了电化学性质。循环伏安图中4.09 / 3.90V和4.22 / 4.04V处的尖锐的氧化还原峰表明高结晶度和良好的阴极可逆性。典型电池的初始放电容量为97 mAh / g,约98%的哥伦比亚电池效率。通过在不同的电流密度(0.1-1.5 mA / cm2)下将电池循环130个循环来进行合成阴极的倍率能力研究,并且观察到在0.1-0.6的循环下可以保持80-100%的初始容量毫安/平方厘米。即使在1.5 mA / cm2(8C)下,每个周期的容量衰减也仅为0.03 mAh / g。因此,我们证明了简单的滤纸模板技术可以生产具有高库仑效率(100-95%)和定速能力的纳米晶LiMn2O4。

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