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Thermodynamic investigation of Ti doping in MgAl2O4 based on the first-principles method

机译:基于第一性原理的MgAl2O4掺杂Ti热力学研究

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Ti doping of MgAl2O4 crystals is investigated using a theoretical thermodynamic approach. A number of types of Ti-doped MgAl2O4 are produced by combining possible Ti oxidation states (Ti2+, Ti3+, and Ti4+), doping sites (Al and Mg sites), and additional point defects (antisites and vacancies). Crystal models containing each doping type are prepared, and by treating them as independent phases, phase diagrams of the Mg-Al-Ti-O system are simulated based on first-principles calculations. This enables the study of stable doping types as a function of synthesis conditions and chemical compositions. Under air or H-2 conditions, only the Ti-Al(center dot) + Mg-Al(') type is stable in the phase diagram, whereas Ti-Al(x) and Ti-Al(center dot) + Mg-Al(') appear to be stable in a strongly reducing CO/CO2 atmosphere at high temperatures. A quantitative analysis model is established for calculating the fractions of certain doping types based on considerations of formation energy and mixing entropy, and the proportions of doping types are calculated. Changes in the Ti3+: Ti4+ ratio are simulated, and the effects of temperature, oxygen partial pressure, Mg/Al ratio, and surface are examined. The results obtained show good agreement with XPS results and photoluminescence measurements. This study provides guidelines to the design and property tuning of Ti-doped MgAl2O4 phosphors for LED applications.
机译:使用理论热力学方法研究了MgAl2O4晶体的Ti掺杂。通过组合可能的Ti氧化态(Ti2 +,Ti3 +和Ti4 +),掺杂位点(Al和Mg位点)以及其他点缺陷(反位点和空位),可以生产出多种类型的掺Ti的MgAl2O4。制备了包含每种掺杂类型的晶体模型,并将它们视为独立的相,基于第一性原理计算来模拟Mg-Al-Ti-O系统的相图。这使得能够根据合成条件和化学组成来研究稳定的掺杂类型。在空气或H-2条件下,相图中只有Ti-Al(中心点)+ Mg-Al(')类型稳定,而Ti-Al(x)和Ti-Al(中心点)+ Mg- Al(')在高温下强烈还原的CO / CO2气氛中似乎很稳定。建立了基于形成能和混合熵的定量分析模型,用于计算某些掺杂类型的比例,并计算出掺杂类型的比例。模拟了Ti3 +:Ti4 +比率的变化,并研究了温度,氧分压,Mg / Al比率和表面的影响。获得的结果与XPS结果和光致发光测量结果吻合良好。这项研究为用于LED的Ti掺杂MgAl2O4荧光粉的设计和性能调整提供了指导。

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