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基于磷烯层纳米尺度动力学的黑磷各向异性热膨胀

Anisotropic thermal expansion of black phosphorus from nanoscale dynamics of phosphorene layers.

作者信息

Henry Laura, Svitlyk Volodymyr, Mezouar Mohamed, Sifré David, Garbarino Gaston, Ceppatelli Matteo, Serrano-Ruiz Manuel, Peruzzini Maurizio, Datchi Frédéric

机构信息

European Synchrotron Radiation Facility (ESRF), 71 Avenue des Martyrs, Grenoble, France.

出版信息

Nanoscale. 2020 Feb 21;12(7):4491-4497. doi: 10.1039/c9nr09218h. Epub 2020 Feb 7.

Abstract

Black phosphorus (bP) is a crystalline material which can be seen as an ordered stacking of two-dimensional layers, referred to as phosphorene. The knowledge of the linear thermal expansion coefficients (LTECs) of bP is of great interest in the field of 2D materials for a better understanding of the anisotropic thermal properties and exfoliation mechanism of this material. Despite several theoretical and experimental studies, important uncertainties remain in the determination of the LTECs of bP. Here, we report accurate thermal expansion measurements along the three crystallographic axes using in situ high temperature X-ray diffraction. From the progressive reduction of the diffracted intensities with temperature, we monitored the loss of the crystal structure of bP across the investigated temperature range, evidencing two thermal expansion regimes at temperature below and above 706 K. Below 706 K, a strong out-of-plane anisotropy can be observed, while at temperatures above 706 K a larger thermal expansion occurs along the a crystallographic direction. From our data and by taking advantage of ab initio optimization, we propose a detailed anisotropic thermal expansion mechanism of bP, which leads to an inter- and intra-layer destabilization. An interpretation of it, based on the high T perturbation of the stabilizing sp orbital mixing effect, is provided, consistent with the high pressure data.

摘要

黑磷(bP)是一种晶体材料,可视为二维层的有序堆叠,称为磷烯。了解bP的线性热膨胀系数(LTECs)对于二维材料领域更好地理解这种材料的各向异性热性能和剥离机制具有重要意义。尽管进行了多项理论和实验研究,但在确定bP的LTECs方面仍存在重大不确定性。在此,我们报告了使用原位高温X射线衍射沿三个晶轴进行的精确热膨胀测量。通过衍射强度随温度的逐渐降低,我们监测了bP在整个研究温度范围内晶体结构的损失,证明了在706 K以下和以上温度存在两种热膨胀状态。在706 K以下,可以观察到强烈的面外各向异性,而在706 K以上温度,沿a晶向发生较大的热膨胀。根据我们的数据并利用从头算优化,我们提出了bP详细的各向异性热膨胀机制,这导致层间和层内失稳。基于稳定的sp轨道混合效应的高温扰动,给出了与高压数据一致的解释。

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