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Phase transition and thermal stability of epitaxial PtSe2 nanolayer on Pt(111)

机译:在PT(111)上外延Ptse2纳米纳米的相转变和热稳定性

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This work relates to direct synthesis of the two-dimensional (2D) transition metal dichalchogenide (TMD) PtSe _(2) using an original method based on chemical deposition during immersion of a Pt(111) surface into aqueous Na _(2) Se solution. Annealing of the sample induces significant modifications in the structural and electronic properties of the resulting PtSe _(2) film. We report systematic investigations of temperature dependent phase transitions by combining synchrotron based high-resolution X-ray photoemission (XPS), low temperature scanning tunnelling microscopy (LT-STM) and low energy electron diffraction (LEED). From the STM images, a phase transition from TMD 2H-PtSe _(2) to Pt _(2) Se alloy monolayer structure is observed, in agreement with the LEED patterns showing a transition from (4 × 4) to (√3 × √3)R30° and then to a (2 × 2) superstructure. This progressive evolution of the surface reconstruction has been monitored by XPS through systematic de-convolution of the Pt4f and Se3d core level peaks at different temperatures. The present work provides an alternative method for the large scale fabrication of 2D transition metal dichalchogenide films.
机译:该研究涉及使用基于化学沉积的原始方法直接合成二维(2D)过渡金属二甲基化物(TMD)Ptse _(2)在将Pt(111)表面沉积到Na _(2)Se水溶液中解决方案。样品的退火在所得PTSE _(2)膜的结构和电子性质中诱导显着的修饰。我们通过组合基于同步的高分辨率X射线照片(XPS),低温扫描隧道显微镜(LT-STM)和低能量电子衍射(LEED)来报告温度相关相变的系统研究。从STM图像,观察到从TMD 2H-PTSE _(2)到Pt _(2)Se合金单层结构的相位转变,同时与显示从(4×4)到(√3×的转变√3)R30°,然后达到(2×2​​)上层建筑。通过在不同温度下的PT4F和SE3D核心水平峰的系统去卷积,通过XPS监测表面重建的这种渐进演变。本作者提供了一种替代方法,用于2D过渡金属二甲基化物膜的大规模制造。

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