首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Study of the Nature and Mechanism of the Rhombohedral-to-Cubic Phase Transition in alpha-AlF_3 with Molecular Dynamics Simulations
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Study of the Nature and Mechanism of the Rhombohedral-to-Cubic Phase Transition in alpha-AlF_3 with Molecular Dynamics Simulations

机译:分子动力学模拟研究α-AlF_3中菱形向立方相变的性质和机理

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摘要

alpha-AlF_3,which adopts a rhombohedrally distorted form of the ReO_3 structure at room temperature,undergoes a phase transition to the cubic ReO_3 structure at 466 °C.The phase transition has been studied using molecular dynamics (MD) simulations performed with a polarizable ion model (PIM).The results are compared to information obtained from experimental diffraction data,and analogies to the tilting schemes of the structurally related perovskite phases are made.The cubic phase can be distinguished from the rhombohedral phase by following the Al-F-Al bond angles that describe the tilting of the A1F_66 corner sharing octahedra as a function of temperature.The Al-F-Al chains are still bent in the so-called cubic phase,but the direction of tilting of the A1F_6 octahedra varies continuously during the MD run,so that the time-averaged symmetry of the system is nearly cubic.The motion of the octahedra primarily involves a 360° rotation of the vector that describes the displacement of the F atom from its ideal position in a linear Al-F-Al chain.It is this 360° motion that distinguishes the cubic from the rhombohedral phase.The high-temperature phase is also associated with increased vibrations of the Al-F-Al chains.The results provide an explanation for the large thermal parameters observed experimentally for fluorine (in structures refined from diffraction data) above the phase transition.The simulation results suggest the possible existence of a third (orthorhombic) form of alpha-AlF_3,which is energetically very similar to the rhombohedral phase at room temperature but differs in its octahedral tilting scheme.
机译:α-AlF_3在室温下呈菱形扭曲的ReO_3结构形式,在466°C时经历了向立方ReO_3结构的相变。已使用分子动力学(MD)模拟了可极化离子,研究了相变将结果与从实验衍射数据获得的信息进行比较,并与结构相关的钙钛矿相的倾斜方案进行类比。通过遵循Al-F-Al可以将立方相与菱面体相区分开键合角描述了共享八面体的A1F_66角的倾斜度随温度的变化.Al-F-Al链仍在所谓的立方相中弯曲,但在MD期间A1F_6八面体的倾斜方向连续变化八面体的运动主要涉及向量的360°旋转,该运动描述了F的位移原子在线性Al-F-Al链中处于理想位置,正是这种360°运动将立方与菱面体相区分开来。高温相还与Al-F-Al链的振动增加有关。结果为实验观察到的在相变以上的氟(从衍射数据提炼的结构中)观察到的较大的热参数提供了解释。模拟结果表明可能存在第三种(斜方晶)形式的α-AlF_3,在能量上非常非常类似于室温下的菱面体相,但八面体倾斜方案有所不同。

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