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相关概念视频

Conformations of Cycloalkanes02:29

Conformations of Cycloalkanes

11.6K
Adolf von Baeyer attempted to explain the instabilities of small and large cycloalkane rings using the concept of angle strain — the strain caused by the deviation of bond angles from the ideal 109.5° tetrahedral value for sp3  hybridized carbons. However, while cyclopropane and cyclobutane are strained, as expected from their highly compressed bond angles, cyclopentane is more strained than predicted, and cyclohexane is virtually strain-free. Hence, Baeyer’s theory that...
11.6K
Conformations of Cyclohexane02:11

Conformations of Cyclohexane

12.2K
Cyclohexane does not exist in a planar form due to the high angle and torsional strain it would experience in the planar structure. Instead, it adopts non-planar chair and boat conformations.
The chair form is the most stable and derives its name from its resemblance to the “easy chair.” In the chair conformation, two carbon atoms are arranged out-of-plane — one above and one below, minimizing the torsional strain. In the chair form, the bond angle is very close to the ideal...
12.2K
Cycloalkanes02:28

Cycloalkanes

12.2K
Cycloalkanes are saturated cyclic hydrocarbons with carbon atoms arranged in the form of rings. They have two fewer hydrogen atoms than the corresponding acyclic alkane; therefore, their general formula is CnH2n. The structural formulas of cycloalkanes are simplified using the line-angle representation. The regular polygons are used to represent the cycloalkane rings, with each side representing a carbon-carbon bond.
The IUPAC nomenclature of cycloalkanes follows similar rules that apply to...
12.2K
Frost Circles for Different Conjugated Systems01:18

Frost Circles for Different Conjugated Systems

2.7K
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.
2.7K
Aromatic Hydrocarbon Anions: Structural Overview01:18

Aromatic Hydrocarbon Anions: Structural Overview

2.7K
Neutral hydrocarbons like cyclopentadiene with an odd number of carbon atoms and one intervening CH2 group in the ring are not aromatic. Cyclopentadiene with 4 π electrons does not satisfy the 4n + 2 π electron rule. Additionally, the intervening CH2 group is sp3 hybridized and lacks a vacant p orbital, thereby interrupting the overlap of p orbitals in a continuous manner and preventing the delocalization of π electrons throughout the ring.
Due to the absence of continuous...
2.7K
Aromatic Hydrocarbon Cations: Structural Overview01:18

Aromatic Hydrocarbon Cations: Structural Overview

2.8K
Cycloheptatriene is a neutral monocyclic unsaturated hydrocarbon that consists of an odd number of carbon atoms and an intervening sp3 carbon in the ring. The three double bonds in the ring correspond to 6 π electrons, which is a Huckel number, and therefore satisfies the criteria of 4n + 2 π electrons. However, the intervening sp3 carbon disrupts the continuous overlap of p orbitals. As a result, cycloheptatriene is not aromatic.
Removing one hydrogen from the intervening CH2 group...
2.8K

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深腔[4]纳夫[4]烯宏循环:合成,形状特征和固态结构.

Paolo Della Sala1, Veronica Iuliano1, Margherita De Rosa1

  • 1Laboratory of Supramolecular Chemistry, Dipartimento di Chimica e Biologia "A. Zambelli", Università degli Studi di Salerno, Via Giovanni Paolo II, 132, 84084 Fisciano, Italy.

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研究人员合成了新的calix[4]naphth[4]arenes,扩大了宏循环家族. X射线分析显示,母化合物及其甲基化模拟物具有明显的构造,突出显示了溶剂.

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深腔的宿主是深腔的宿主.碎片合合成 碎片合合成混合宏观循环的混合宏观循环

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科学领域:

  • 超分子化学 超分子化学
  • 有机合成 有机合成
  • 宏观循环化学 宏观循环化学

背景情况:

  • 卡利克斯[n]纳夫特[m]是一种新型的深腔混合宏循环.
  • 这些宏循环是由 (n) 和纳 (m) 单元构成的.

研究的目的:

  • 通过合成新的衍生品来扩大calix[n]naphth[m]arene家族.
  • 为了研究[4]纳[4]及其甲基化模拟物的合成,构造分析,光谱性质和固态结构.

主要方法:

  • 在酸性条件下通过2 + 2片段合宏循环合成.
  • 溶剂控制的选择性形成的[4]纳夫[4]衍生物.
  • 为了固态结构的确定,使用X射线晶体学.
  • 符合性分析和光谱学表征.

主要成果:

  • 成功合成了[4]纳[4] (C) 和其甲基化模拟物 (C).
  • 的X射线结构揭示了一种类似椅子的1,2,3,4-替代形状,由分子内键稳定.
  • 对C的X射线结构显示出一个明显的1,3,5,7交替形状.

结论:

  • 这项研究成功地扩大了calix[n]naphth[m]arene家族的新合成化合物.
  • 这些宏观周期的结构多样性通过固态结构分析来证明.
  • 溶剂在选择性合成特定的calix[n]naphth[m]arene衍生物中发挥着关键作用.