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Effect of carbon content and annealing atmosphere on phase purity and morphology of Li2MnSiO4 synthesized by a PVA assisted sol–gel method

机译:碳含量和退火气氛对pVa辅助溶胶 - 凝胶法合成Li2mnsiO4相纯度和形貌的影响

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摘要

Lithium transition metal orthosilicates of the general formula Li2MSiO4 have gained great interest as potential positive electrode material for Li-ion batteries. This study reports the dependence of phase purity and morphology on heat treatment atmosphere and the amount of corn-starch as carbonization agent during a PVA assisted sol–gel synthesis of nano-sized porous Li2MnSiO4/C composites. All samples were indexed to the orthorhombic Pmn21 polymorph, but samples with carbon contents less than 6% showed traces of the second orthorhombic polymorph Pmnb. Highest phase purities and a desired porous nano-sized morphology were obtained when heat treatments were carried out in 5% H2 and corn-starch amounts were ≥ 25 wt.%. Powders with varying carbon amounts were produced and the electrochemical performance was determined by galvanostatic cycling at different current densities. Samples with a corn-starch amount of 25 wt.% offered the highest initial discharge capacity of 155 mAh g−1 at a current density of 3 mA g−1.
机译:通式为Li 2 MSiO 4的锂过渡金属原硅酸盐作为锂离子电池的潜在正极材料引起了极大的兴趣。这项研究报告了在纳米级多孔Li2MnSiO4 / C复合材料的PVA辅助溶胶-凝胶合成过程中,相纯度和形貌对热处理气氛的影响以及玉米淀粉作为碳化剂的量。所有样品都被索引为正交晶型的Pmn21多晶型物,但是碳含量低于6%的样品显示出第二正交晶型的多晶型物Pmnb的痕迹。当在5%H2中进行热处理且玉米淀粉的含量≥25 wt。%时,可获得最高的相纯度和所需的多孔纳米尺寸形态。产生具有变化的碳量的粉末,并且通过在不同电流密度下的恒电流循环来确定电化学性能。玉米淀粉含量为25 wt。%的样品在3 mA g-1的电流密度下提供了155 mAh g-1的最高初始放电容量。

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