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相关概念视频

VSEPR Theory and the Basic Shapes02:52

VSEPR Theory and the Basic Shapes

Overview of VSEPR Theory
VSEPR Theory and the Effect of Lone Pairs04:01

VSEPR Theory and the Effect of Lone Pairs

Effect of Lone Pairs of Electrons on Molecule Geometry
Hybridization of Atomic Orbitals I03:24

Hybridization of Atomic Orbitals I

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...
VSEPR Theory02:37

VSEPR Theory

Valence shell electron-pair repulsion theory (VSEPR theory) enables us to predict the molecular structure around a central atom from an examination of the number of bonds and lone electron pairs in its Lewis structure. The VSEPR model assumes that electron pairs in the valence shell of a central atom will adopt an arrangement that minimizes repulsions between these electron pairs by maximizing the distance between them. The electrons in the valence shell of a central atom form either bonding...
Structure of Benzene: Molecular Orbital Model01:18

Structure of Benzene: Molecular Orbital Model

According to the molecular orbital (MO) model, benzene has a planar structure with a regular hexagon of six sp2 hybridized carbons. As shown in Figure 1, each carbon is bonded to three other atoms with C–C–C and H–C–C bond angles of 120°. The C–H bond length is 109 pm, and the C–C bond length is 139 pm which is midway between the single bond length of sp3 hybridized carbons (154 pm) and sp2 hybridized carbons (133 pm).
Frost Circles for Different Conjugated Systems01:18

Frost Circles for Different Conjugated Systems

The inscribed polygon method is consistent with Hückel’s 4n + 2 rule and helps to learn whether the given cyclic compound is aromatic or not. The compound is stable and aromatic if every bonding molecular orbital (MO) is completely filled with a pair of electrons. However, if the non-bonding or antibonding orbitals are filled with electrons, the compound is unstable and not aromatic. Consider the Frost circle diagrams for cycloalkenes containing 4 to 8 carbons.

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相关实验视频

Updated: Jul 6, 2026

Synthesis of Nine-atom Deltahedral Zintl Ions of Germanium and their Functionalization with Organic Groups
08:15

Synthesis of Nine-atom Deltahedral Zintl Ions of Germanium and their Functionalization with Organic Groups

Published on: February 11, 2012

平面化b(6)h(6)(2-) 八面体 Ab initio预测一个新的平面全芳香分子家族.

Anastassia N Alexandrova1, K Alexander Birch, Alexander I Boldyrev

  • 1Department of Chemistry and Biochemistry, Utah State University, Logan, Utah 84322, USA.

Journal of the American Chemical Society
|September 4, 2003
PubMed
概括

研究人员发现,多面可以转化为平面芳香结构,类似于碳化合物. 这一发现为新一类平面芳香性全分子开辟了可能性.

科学领域:

  • 无机化学 无机化学
  • 计算化学计算化学
  • 材料科学 材料科学 材料科学

背景情况:

  • 化学的特点是三维多面体结构.
  • 碳化学具有丰富的平面芳香结构.

研究的目的:

  • 为了研究将多面体酸盐平整成平面芳香结构的可能性.
  • 为了预测新的平面芳香全分子.

主要方法:

  • 使用ab initio计算来研究结构转变.
  • 检查了B6H6^2-,B5H5^2-,B7H7^2-,和B10H8^4-.等特定的离子.

主要成果:

  • 证明了多面玻可以被简化为平面芳香形式.
  • 预测的平面结构为B6H6^6-, B5H5^6-, B7H7^6-,和一个类似纳丁的B10H8^10-.
  • 展示了一个新的平面芳香全分子家族的潜力.

结论:

  • 多面体可以采用平面芳香结构.
  • 这项研究扩大了化合物的已知的结构多样性.
  • 从理论上讲,一种新的平面芳香分子类型是可能的.

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