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相关概念视频

Valence Bond Theory02:42

Valence Bond Theory

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Coordination compounds and complexes exhibit different colors, geometries, and magnetic behavior, depending on the metal atom/ion and ligands from which they are composed. In an attempt to explain the bonding and structure of coordination complexes, Linus Pauling proposed the valence bond theory, or VBT, using the concepts of hybridization and the overlapping of the atomic orbitals. According to VBT, the central metal atom or ion (Lewis acid) hybridizes to provide empty orbitals of suitable...
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Gauss's Law in Dielectrics01:17

Gauss's Law in Dielectrics

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Consider a polar dielectric placed in an external field. In such a dielectric, opposite charges on adjacent dipoles neutralize each other, such that the net charge within the dielectric is zero. When a polar dielectric is inserted in between the capacitor plates, an electric field is generated due to the presence of net charges near the edge of the dielectric and the metal plates interface. Since the external electrical field merely aligns the dipoles, the dielectric as a whole is neutral. An...
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Ferromagnetism01:31

Ferromagnetism

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Materials like iron, nickel, and cobalt consist of magnetic domains, within which the magnetic dipoles are arranged parallel to each other. The magnetic dipoles are rigidly aligned in the same direction within a domain by quantum mechanical coupling among the atoms. This coupling is so strong that even thermal agitation at room temperature cannot break it. The result is that each domain has a net dipole moment. However, some materials have weaker coupling, and are ferromagnetic at lower...
2.8K
Relation between Poisson's ratio, Modulus of Elasticity and Modulus of Rigidity01:15

Relation between Poisson's ratio, Modulus of Elasticity and Modulus of Rigidity

827
Deformation occurs in axial and transverse directions when an axial load is applied to a slender bar. This deformation impacts the cubic element within the bar, transforming it into either a rectangular parallelepiped or a rhombus, contingent on its orientation. This transformation process induces shearing strain. Axial loading elicits both shearing and normal strains. Applying an axial load instigates equal normal and shearing stresses on elements oriented at a 45° angle to the load axis.
827
Imperfections in Crystal Structure: Stoichiometric Point Defects01:26

Imperfections in Crystal Structure: Stoichiometric Point Defects

147
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...
147
Imperfections in Crystal Structure: Non-Stoichiometric Defects01:29

Imperfections in Crystal Structure: Non-Stoichiometric Defects

117
Non-stoichiometric defects refer to a type of defect in the crystal structure of a compound where the ratio of its constituent elements deviates from the ideal stoichiometric ratio. There are two main types of non-stoichiometric defects: metal excess defects and metal deficiency defects.Metal excess defects occur when there is a slight surplus of metal ions than what is required by the stoichiometric ratio of the compound. For example, heating a sodium chloride crystal in sodium vapor results...
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A Fabrication and Measurement Method for a Flexible Ferroelectric Element Based on Van Der Waals Heteroepitaxy
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在组合调节铁电材料中的几何挫折.

Narayani Choudhury1, Laura Walizer, Sergey Lisenkov

  • 1Department of Physics, University of Arkansas, Fayetteville, Arkansas 72701, USA. narayani@uark.edu

Nature
|February 11, 2011
PubMed
概括

以前在磁系统中研究过的几何挫折现象,现在被证明在铁电材料中发生. 构成分级的铁电表现出异国情调的条纹阶段和关键现象,将它们与几何挫折联系起来.

科学领域:

  • 凝聚物质物理学 凝聚物质物理学
  • 材料科学 材料科学 材料科学
  • 固态物理 固态物理

背景情况:

  • 几何挫折源于相互竞争的相互作用和格子几何,导致磁体系统中的奇异现象.
  • 其中的例子包括旋转冰,旋转液体,旋转玻璃,分数电荷定量化和磁.
  • 几何挫折机制涉及到放松/多铁体行为,巨大的磁电容合和高温超导.

研究的目的:

  • 研究铁电材料中几何挫折的表现.
  • 探索关于几何挫折的组成分级铁电材料的特性.

主要方法:

  • 用第一原则计算来研究组成分级的铁电材料.
  • 分析的重点是识别这些材料中的几何丧指纹.

主要成果:

  • 构成分级的铁电体表现出几何丧的特征,包括退化的能量表面和关键现象.
  • 观察到具有复杂空间组织的新型条纹阶段,螺旋状态,拓缺陷和曲率.
  • 这些发现确立了铁电材料作为一种能够表现出几何挫折的材料类.

结论:

  • 构成分级铁电体代表了研究几何丧的新前沿.

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  • 这些材料作为一个关键的环节,将铁电学整合到对几何挫败系统的更广泛理解中.
  • 初始计算提供了对这种新类挫败材料的深度显微镜洞察.