在CrSBr中晶格导热率:层间相互作用,磁性排序和外部应变的影响
Ying Liu1, Yupeng Zhi2,3, Qinxi Liu2,3
1Key Laboratory of Materials Modification by Laser, Ion and Electron Beams (Ministry of Education), Dalian University of Technology, Dalian 116024, People's Republic of China.
概括
这项研究表明,范德瓦尔斯 (vdWs) 磁性半导体 CrSBr 的导热性是异构的,取决于层数和磁性排序. 在反铁磁CrSBr双层的y方向中发现了最低的导热率.
科学领域:
- 材料科学 材料科学 材料科学
- 凝聚物质物理学 凝聚物质物理学
- 固态物理 固态物理
背景情况:
- 数字信息和大数据技术需要了解磁性存储设备中的热量产生,以确保数据的安全性和稳定性.
- 热管理对于电子和磁性设备的性能和寿命至关重要.
研究的目的:
- 为了研究范德瓦尔斯 (vdWs) 磁性半导体 CrSBr.Br 的内平面格子导热率.
- 探索层次数 (批量到单层) 和磁性排序对热传输特性的影响.
主要方法:
- 使用第一原则计算来建模 CrSBr.Br.
- 采用了声子博尔兹曼传输方程来分析热导率.
- 检查了声光谱,声寿命,热容量,散射概率和声-声相互作用强度.
主要成果:
- CrSBr表现出强烈的异构热传输行为.
- 网格的导热性取决于层数和磁性排序.
- 反铁磁CrSBr双层的y方向显示了所有温度的最低导热率.
结论:
- 外平面音声声波模式的软化,Cr-Br振动的变化,以及很大的声波波段间隙是影响热导率的关键因素.
- 提供了关于VDW磁性材料中的声子传输的全面见解.
- 突出了用于先进应用的磁性半导体调节热性能的潜力.
相关概念视频
Trends in Lattice Energy: Ion Size and Charge
An ionic compound is stable because of the electrostatic attraction between its positive and negative ions. The lattice energy of a compound is a measure of the strength of this attraction. The lattice energy (ΔHlattice) of an ionic compound is defined as the energy required to separate one mole of the solid into its component gaseous ions. For the ionic solid sodium chloride, the lattice energy is the enthalpy change of the process:
X-ray Crystallography
The size of the unit cell and the arrangement of atoms in a crystal may be determined from measurements of the diffraction of X-rays by the crystal, termed X-ray crystallography.
Diffraction
Diffraction is the change in the direction of travel experienced by an electromagnetic wave when it encounters a physical barrier whose dimensions are comparable to those of the wavelength of the light. X-rays are electromagnetic radiation with wavelengths about as long as the distance between neighboring...
Diffraction
Diffraction is the change in the direction of travel experienced by an electromagnetic wave when it encounters a physical barrier whose dimensions are comparable to those of the wavelength of the light. X-rays are electromagnetic radiation with wavelengths about as long as the distance between neighboring...
Lattice Centering and Coordination Number
The structure of a crystalline solid, whether a metal or not, is best described by considering its simplest repeating unit, which is referred to as its unit cell. The unit cell consists of lattice points that represent the locations of atoms or ions. The entire structure then consists of this unit cell repeating in three dimensions. The three different types of unit cells present in the cubic lattice are illustrated in Figure 1.
Types of Unit Cells
Imagine taking a large number of identical...
Types of Unit Cells
Imagine taking a large number of identical...
Thermal Strain
Thermal strain is a concept that arises when we consider how temperature changes affect structures. Unlike the conventional assumption that structures remain constant under load, real-world scenarios often involve temperature fluctuations that can significantly impact these structures. Consider a homogeneous rod with a uniform cross-section resting freely on a flat horizontal surface. If the rod's temperature increases, the rod elongates. This elongation is proportional to the temperature...
Lattice Energies of Ionic Crystals
Lattice energy represents the energy released when gaseous cations and anions combine to form an ionic solid, reflecting the strength of electrostatic interactions within the crystal. This process is fundamentally governed by Coulombic attraction between oppositely charged ions, where the potential energy varies inversely with the interionic distance and directly with the product of ionic charges. As ions approach one another, the electrostatic energy becomes increasingly negative, indicating a...
Imperfections in Crystal Structure: Stoichiometric Point Defects
Schottky defects arise when some lattice points in a crystal, such as those in NaCl, remain unoccupied, creating lattice vacancies without disturbing the overall electrical neutrality of the crystal. This defect is common in ionic crystals where the positive and negative ions are similar in size, as seen in sodium chloride and cesium chloride. The presence of Schottky defects enables the crystal to conduct electricity to a small extent through an ionic mechanism. Electric fields cause nearby...


