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Ionic Crystal Structures02:42

Ionic Crystal Structures

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Ionic crystals consist of two or more different kinds of ions that usually have different sizes. The packing of these ions into a crystal structure is more complex than the packing of metal atoms that are the same size.
Most monatomic ions behave as charged spheres, and their attraction for ions of opposite charge is the same in every direction. Consequently, stable structures for ionic compounds result (1) when ions of one charge are surrounded by as many ions as possible of the opposite...
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Hybridization of Atomic Orbitals I03:24

Hybridization of Atomic Orbitals I

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The mathematical expression known as the wave function, ψ, contains information about each orbital and the wavelike properties of electrons in an isolated atom. When atoms are bound together in a molecule, the wave functions combine to produce new mathematical descriptions that have different shapes. This process of combining the wave functions for atomic orbitals is called hybridization and is mathematically accomplished by the linear combination of atomic orbitals. The new orbitals that...
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Structural Isomerism02:34

Structural Isomerism

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Isomerism in Complexes
Isomers are different chemical species that have the same chemical formula. Structural isomerism of coordination compounds can be divided into two subcategories, the linkage isomers and coordination-sphere isomers.
Linkage isomers occur when the coordination compound contains a ligand that can bind to the transition metal center through two different atoms. For example, the CN− ligand can bind through the carbon atom or through the nitrogen atom. Similarly, SCN− can...
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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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In addition to the oxymercuration–demercuration method, which converts the alkenes to alcohols with Markovnikov orientation, a complementary hydroboration-oxidation method yields the anti-Markovnikov product. The hydroboration reaction, discovered in 1959 by H.C. Brown, involves the addition of a B–H bond of borane to an alkene giving an organoborane intermediate. The oxidation of this intermediate with basic hydrogen peroxide forms an alcohol.
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Overview of VSEPR Theory
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一种具有Clathrate VIII结构的酸盐

Julia-Maria Hübner1,2, Wilder Carrillo-Cabrera2, Primoz Kozelj2

  • 1Department of Chemistry, Centre for Analysis and Synthesis, Naturvetarvägen 14, 221 00 Lund, Sweden.

Journal of the American Chemical Society
|July 25, 2022
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概括

研究人员发现了一种新型高压酸盐材料, 这种密集的结构不同于低压级的酸盐I,为高压材料的形成提供了洞察力.

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科学领域:

  • 固态化学
  • 材料科学
  • 晶体学

背景情况:

  • 酸盐化合物表现出多样化的晶体结构.
  • 克拉特结构以它们的形框架而闻名.
  • 高压可以诱导材料的新型结构阶段.

研究的目的:

  • 合成和描述一种新型的高压酸盐阶段.
  • 研究高压和低压酸盐形式之间的结构差异.
  • 探索八酸盐作为高压多态的潜力.

主要方法:

  • 在5-8GPa和1200K的高压合成.
  • 单晶X射线衍射用于结构确定.
  • 结晶学数据对I和VIII的结构进行比较.

主要成果:

  • 合成了第一个具有酸盐VIII结构的酸盐,Na8B4Si42.
  • 与克拉酸I相比,克拉酸VIII的密度更高,细胞体积更小.
  • 确定了第八阶段的空间组和格子参数.

结论:

  • 克拉酸VIII型结构比克拉酸I更为密集.
  • 高压驱动了这种酸盐中紧的酸盐VIII结构的形成.
  • 这项研究开辟了发现其他酸盐VIII化合物的高压相的途径.