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関連する概念動画

Chair Conformation of Cyclohexane02:02

Chair Conformation of Cyclohexane

The chair conformation is the most stable form of cyclohexane due to the absence of angle and torsional strain. The absence of angle strain is a result of cyclohexane’s bond angle being very close to the ideal tetrahedral bond angle of 109.5° in its chair conformer. Similarly, the torsional strain is also absent owing to the perfectly staggered arrangement of bonds.
The hydrogen atoms linked to carbons are arranged in two different axial and equatorial orientations to achieve this staggered...
Stability of Substituted Cyclohexanes02:30

Stability of Substituted Cyclohexanes

This lesson discusses the stability of substituted cyclohexanes with a focus on energies of various conformers and the effect of 1,3-diaxial interactions.
The two chair conformations of cyclohexanes undergo rapid interconversion at room temperature. Both forms have identical energies and stabilities, each comprising equal amounts of the equilibrium mixture. Replacing a hydrogen atom with a functional group makes the two conformations energetically non-equivalent.
For example, in...
Conformations of Cyclohexane02:11

Conformations of Cyclohexane

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 tetrahedral value,...
Conformations of Cycloalkanes02:29

Conformations of Cycloalkanes

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 was based on the...
¹H NMR of Conformationally Flexible Molecules: Temporal Resolution00:52

¹H NMR of Conformationally Flexible Molecules: Temporal Resolution

At room temperature, the chair conformer of cyclohexane undergoes rapid ring flipping between two equivalent chair conformers at a rate of approximately 105 times per second. These two chair conformers are in equilibrium. The rapid ring flipping results in the interconversion of the axial proton to an equatorial proton and an equatorial to the axial proton. Such interconversions are too rapid and cannot be detected on the NMR timescale. Hence, the NMR spectrometer cannot distinguish between the...
Aromatic Hydrocarbon Cations: Structural Overview01:18

Aromatic Hydrocarbon Cations: Structural Overview

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 with both...

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関連する実験動画

Updated: Jun 4, 2026

Preparation of a Corannulene-functionalized Hexahelicene by Copper(I)-catalyzed Alkyne-azide Cycloaddition of Nonplanar Polyaromatic Units
09:35

Preparation of a Corannulene-functionalized Hexahelicene by Copper(I)-catalyzed Alkyne-azide Cycloaddition of Nonplanar Polyaromatic Units

Published on: September 18, 2016

フルレンのマクロサイクリック宿主:結合能力の極端な変化と小さな構造的変化.

David Canevet1, María Gallego, Helena Isla

  • 1IMDEA-Nanociencia, Facultad de Ciencias, Ciudad Universitaria de Cantoblanco, E-28049 Madrid, Spain.

Journal of the American Chemical Society
|February 16, 2011
PubMed
まとめ

研究者らは,π-拡張テトラチアフルバレン (exTTF) ユニットを持つ新しいマクロサイクルホストを開発した. これらの宿主は,C ((60)) フラーレンのための世界記録の結合親和性を示し,カスタマイズされた分子認識を披露しています.

さらに関連する動画

Preparation and Characterization of C60/Graphene Hybrid Nanostructures
08:40

Preparation and Characterization of C60/Graphene Hybrid Nanostructures

Published on: May 15, 2018

Microscopic Visualization of Porous Nanographenes Synthesized through a Combination of Solution and On-Surface Chemistry
08:18

Microscopic Visualization of Porous Nanographenes Synthesized through a Combination of Solution and On-Surface Chemistry

Published on: March 4, 2021

関連する実験動画

Last Updated: Jun 4, 2026

Preparation of a Corannulene-functionalized Hexahelicene by Copper(I)-catalyzed Alkyne-azide Cycloaddition of Nonplanar Polyaromatic Units
09:35

Preparation of a Corannulene-functionalized Hexahelicene by Copper(I)-catalyzed Alkyne-azide Cycloaddition of Nonplanar Polyaromatic Units

Published on: September 18, 2016

Preparation and Characterization of C60/Graphene Hybrid Nanostructures
08:40

Preparation and Characterization of C60/Graphene Hybrid Nanostructures

Published on: May 15, 2018

Microscopic Visualization of Porous Nanographenes Synthesized through a Combination of Solution and On-Surface Chemistry
08:18

Microscopic Visualization of Porous Nanographenes Synthesized through a Combination of Solution and On-Surface Chemistry

Published on: March 4, 2021

科学分野:

  • 超分子化学 超分子化学
  • 有機化学 オーガニック・ケミストリー
  • マテリアルサイエンス 材料科学

背景:

  • フーラーレン (C60) とC70) は,ユニークな電子的および構造的特性を有しています.
  • フラーレンの選択性および高親和性宿主分子を開発することは,分子認識における重要な課題です.
  • π-拡張テトラチアフルバレン (exTTF) 誘導体は,フルレン結合に有望な電子と形状の互補性を提供しています.

研究 の 目的:

  • マクロサイクリック bis-exTTF ホストを微調整して,C(60) とC(70) フラーレンの結合を強化します.
  • アロマティック・スペーサーとリンクアー長さの構造的変化がフルレンの複合化に与える影響を調査する.
  • 全有機フルレレン受容体の新しいファミリーにおける構造-親和関係を探求する.

主な方法:

  • 9つの新しいマクロサイクリックビス-エクスTTF受容体の合成,様々なアロマティック・スペーサー (p-キセレン,m-キセレン,2,6-ジメチルナフタレン) とリンカー長さ.
  • マクロサイクルの形成のための環閉メタテシスを利用する.
  • 定量的にC ((60) とC ((70) との結合親和性とステキオメトリーを評価するために,UV-visタイトレーションを行います.
  • 構造設計を導くための予備的な分子モデリング.

主要な成果:

  • クロロベンゼンで6.5±0.5までのlog K (a) と C (−60) 複合体の高い結合定数を達成し,これは全有機受容体の記録である.
  • マクロサイクルの宿主における軽微な構造的変化が,結合親和性と,場合によっては複雑なステキオメトリーを大幅に変化させることを実証した.
  • 特定された特定の構造的特徴は,C60) とC70) フルレネスの認識を強化します.

結論:

  • この研究は,フルレンのための高効率の全有機マクロサイクリック宿主の新しい家族を提示しています.
  • この結果は,特にフルレネのような挑戦的なゲストの場合は,ホスト・ゲスト化学における正確な構造制御の重要性を強調しています.
  • exTTF単位とフルレンの間の電子的および幾何学的互補性は,観察された強力で安定した複合体形成の鍵です.