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Synthesis of Lithium Metal Oxide Nanoparticles by Induction Thermal Plasmas

机译:感应热等离子体合成锂金属氧化物纳米粒子

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摘要

Lithium metal oxide nanoparticles were synthesized by induction thermal plasma. Four different systems—Li–Mn, Li–Cr, Li–Co, and Li–Ni—were compared to understand formation mechanism of Li–Me oxide nanoparticles in thermal plasma process. Analyses of X-ray diffractometry and electron microscopy showed that Li–Me oxide nanoparticles were successfully synthesized in Li–Mn, Li–Cr, and Li–Co systems. Spinel structured LiMn2O4 with truncated octahedral shape was formed. Layer structured LiCrO2 or LiCoO2 nanoparticles with polyhedral shapes were also synthesized in Li–Cr or Li–Co systems. By contrast, Li–Ni oxide nanoparticles were not synthesized in the Li–Ni system. Nucleation temperatures of each metal in the considered system were evaluated. The relationship between the nucleation temperature and melting and boiling points suggests that the melting points of metal oxides have a strong influence on the formation of lithium metal oxide nanoparticles. A lower melting temperature leads to a longer reaction time, resulting in a higher fraction of the lithium metal oxide nanoparticles in the prepared nanoparticles.
机译:通过感应热等离子体合成了锂金属氧化物纳米粒子。比较了四种不同的系统(Li-Mn,Li-Cr,Li-Co和Li-Ni)以了解热等离子体过程中Li-Me氧化物纳米粒子的形成机理。 X射线衍射和电子显微镜分析表明,Li-Me氧化物纳米粒子已成功在Li-Mn,Li-Cr和Li-Co系统中合成。形成具有八面体截断形状的尖晶石结构的LiMn2O4。在Li–Cr或Li–Co系统中还合成了具有多面体形状的层状LiCrO2或LiCoO2纳米颗粒。相比之下,Li-Ni系统中没有合成Li-Ni氧化物纳米颗粒。评估了所考虑系统中每种金属的成核温度。成核温度与熔点和沸点之间的关系表明,金属氧化物的熔点对锂金属氧化物纳米颗粒的形成具有强烈的影响。较低的熔融温度导致较长的反应时间,导致所制备的纳米颗粒中锂金属氧化物纳米颗粒的比例更高。

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