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An investigation into the temperature phase transitions of synthesized materials with Al- and Mg-doped lithium manganese oxide spinels by in situ powder X-ray diffraction

机译:原位粉末X射线衍射研究掺铝镁镁尖晶石尖晶石合成材料的温度相变

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Three spinel materials were prepared and characterized by in situ powder X-ray diffraction (PXRD) techniques to track their phase changes that occurred in the typical batch synthesis process from a sol-gel mixture to the final crystalline spinel oxide. The materials were also characterized by thermal gravimetric analysis, whereby the materials decomposition mechanisms that were observed as the precursor, was gradually heated to the final oxide. The results showed that all the materials achieved their total weight loss at about 400 degrees C. The in situ PXRD analysis showed the progression of the phase transitions where certain of the materials changed from a crystalline precursor to an amorphous intermediate phase and finally to the spinel cathode oxide (Li1.03Mg0.2Mn1.77O4). For other materials, the precursor would start as an amorphous phase and upon heating, convert into an impure intermediate phase (Mn2O3) before forming the final spinel oxide (Li1.03Mn1.97O4). On the other hand, the LiAl0.4Mn1.6O4 would start with an amorphous precursor, with no intermediate phases and immediately formed the final spinel oxide phase. The in situ PXRD study also showed the increases in the materials respective lattice parameters of the crystalline unit cells upon heating and the significant increases in their crystallite sizes when heated above 600 degrees C. (C) 2016 International Centre for Diffraction Data.
机译:制备了三种尖晶石材料,并通过原位粉末X射线衍射(PXRD)技术对其进行了表征,以跟踪它们在从溶胶-凝胶混合物到最终的结晶尖晶石氧化物的典型批量合成过程中发生的相变。还通过热重分析对材料进行了表征,据此,将作为前体观察到的材料分解机理逐渐加热为最终氧化物。结果表明,所有材料均在约400摄氏度时实现了总重量损失。原位PXRD分析表明,某些材料从结晶前体转变为非晶态中间相,最后转变为尖晶石的相变进展阴极氧化物(Li1.03Mg0.2Mn1.77O4)。对于其他材料,前体将以无定形相开始,并在加热后转化为不纯的中间相(Mn2O3),然后形成最终的尖晶石氧化物(Li1.03Mn1.97O4)。另一方面,LiAl0.4Mn1.6O4将从无中间相的无定形前体开始,并立即形成最终的尖晶石氧化物相。原位PXRD研究还显示,加热后晶体晶胞的材料各自晶格参数增加,而加热到600摄氏度以上时其微晶尺寸显着增加。(C)2016年国际衍射数据中心。

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