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Structural transition in nanostructured Eu2O3 under high pressures

机译:纳米结构Eu2O3在高压下的结构转变

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We report here studies on the effect of high pressure on the structural properties of nano-sized Europium sesquioxide (Eu2O3) up to a pressure of about 16.4 GPa. At ambient conditions, the starting sample was found to be predominantly cubic type Eu2O3 or in Eu3+ state with a trace of Eu2+. The presence of Eu2+ state is assumed to be arising due to the non-stoichiometric Eu1-xO phase which is obtained from XPS studies by the deconvolution of the Eu 3d-core levels. The Raman studies at ambient show a strong peak at about 333 cm(-1), which is known to occur due to the F-g mode of cubic Eu2O3 and in a similar way, the XRD data shows major peaks corresponding to the cubic phase of Eu2O3. A Mao-Bell type diamond anvil cell (DAC) was used to generate high pressures for XRD and Raman spectroscopy studies. It was observed that the material undergoes a structural change from cubic to monoclinic structure with an on set transition pressure at around 2 GPa and completes at around 8 GPa. This has been inferred from the fact that above about 2.0 GPa pressure, Raman studies show the emergence of a new peak corresponding to the monoclinic phase which increases in intensity and shifts further with increase in pressure, while the XRD studies show that above about 2.0 GPa, the peaks corresponding to monoclinic phase emerge, which show a slight increase in preferred orientation as the pressure is increased. A detailed discussion has been provided to explain this fact.
机译:我们在这里报告了高压对纳米级倍半氧化pressure(Eu2O3)的结构性能的影响,压力高达约16.4 GPa。在环境条件下,发现起始样品主要为立方型Eu2O3或处于Eu3 +状态,并带有微量Eu2 +。假定Eu2 +态的存在是由于非化学计量的Eu1-xO相引起的,该相是从XPS研究中通过对Eu 3d核心能级进行反卷积而获得的。拉曼研究在环境下显示出一个强峰,大约在333 cm(-1)处,这是由于立方Eu2O3的Fg模态而发生的,并且以类似的方式,XRD数据显示出与Eu2O3立方相相对应的主要峰。毛泽尔贝尔型金刚石砧盒(DAC)用于产生高压,用于XRD和拉曼光谱研究。观察到该材料经历了从立方到单斜晶结构的结构变化,其设定的转变压力为约2 GPa,并在约8 GPa时完成。这是由以下事实推论得出的:高于约2.0 GPa的压力,拉曼研究表明出现了一个新峰,该峰对应于单斜晶相,其强度增加并且随着压力的增加而进一步移动,而XRD研究表明,高于约2.0 GPa ,出现了与单斜晶相相对应的峰,随着压力的增加,优选取向略有增加。已经提供了详细的讨论来解释这一事实。

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