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Spin–Spin Coupling: Three-Bond Coupling (Vicinal Coupling)01:22

Spin–Spin Coupling: Three-Bond Coupling (Vicinal Coupling)

1.1K
Vicinal or three-bond coupling is commonly observed between protons attached to adjacent carbons. Here, nuclear spin information is primarily transferred via electron spin interactions between adjacent C‑H bond orbitals. This generally favors the antiparallel arrangement of spins, so 3J values are usually positive.
The extent of coupling depends on the C‑C bond length, the two H‑C‑C angles, any electron-withdrawing substituents, and the dihedral angle between the...
1.1K
Aromatic Hydrocarbon Cations: Structural Overview01:18

Aromatic Hydrocarbon Cations: Structural Overview

3.0K
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...
3.0K
Spin–Spin Coupling: One-Bond Coupling01:17

Spin–Spin Coupling: One-Bond Coupling

1.1K
Coupling interactions are strongest between NMR-active nuclei bonded to each other, where spin information can be transmitted directly through the pair of bonding electrons. While nuclei polarize their electrons to the opposite spins, the bonding electron pair has opposite spins. Configurations with antiparallel nuclear spins are expected to be lower in energy. When coupling makes antiparallel states more favorable, J is considered to have a positive value. The one-bond coupling constant, 1J,...
1.1K
Spin–Spin Coupling: Two-Bond Coupling (Geminal Coupling)01:20

Spin–Spin Coupling: Two-Bond Coupling (Geminal Coupling)

1.1K
Two NMR-active nuclei bonded to a central atom can be involved in geminal or two-bond coupling. Geminal coupling is commonly seen between diastereotopic protons in chiral molecules and unsymmetrical alkenes, among others.
The central atom need not be NMR-active because its electrons are affected by the electron polarization of the spin-active atoms. However, spin information is transmitted less effectively than in one-bond coupling, and 2J values are usually weaker than 1J values. The energy of...
1.1K
¹H NMR: Long-Range Coupling01:27

¹H NMR: Long-Range Coupling

2.0K
The coupling interactions of nuclei across four or more bonds are usually weak, with J values less than 1 Hz. While these are usually not observed in spectra, the presence of multiple bonds along the coupling pathway can result in observable long-range coupling.
In alkenes, spin information is communicated via σ–π overlap, as seen in allylic (four-bond) and homoallylic (five-bond) couplings. These coupling interactions are stronger when the σ bond is parallel to the alkene...
2.0K
Hydrogen Bonds01:04

Hydrogen Bonds

10.4K
A hydrogen bond is formed when a weakly positive hydrogen atom already bonded to one electronegative atom (for example, the oxygen in the water molecule) is attracted to another electronegative atom from another polar molecule, such as water (H2O), hydrogen fluoride (HF), or ammonia (NH3). The huge electronegativity difference between the H atom (2.1) and the atom to which it is bonded (4.0 for an F atom, 3.5 for an O atom, or 3.0 for an N atom), combined with the very small size of an H atom...
10.4K
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  1. ホーム
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  4. 化学工学
  5. 電気化学エネルギー貯蔵と変換
  6. キュマリン染料における内電荷移転に対する水素結合の影響:統合された実験的および理論的調査
  1. ホーム
  2. 研究分野
  3. エンジニアリング
  4. 化学工学
  5. 電気化学エネルギー貯蔵と変換
  6. キュマリン染料における内電荷移転に対する水素結合の影響:統合された実験的および理論的調査

関連する実験動画

Vibrational Spectra of a N719-Chromophore/Titania Interface from Empirical-Potential Molecular-Dynamics Simulation, Solvated by a Room Temperature Ionic Liquid
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Vibrational Spectra of a N719-Chromophore/Titania Interface from Empirical-Potential Molecular-Dynamics Simulation, Solvated by a Room Temperature Ionic Liquid

Published on: January 25, 2020

5.7K

キュマリン染料における内電荷移転に対する水素結合の影響:統合された実験的および理論的調査

Jing Ge1, Jing Xiao1, Bingqian Xue1

  • 1School of Physics and Information Engineering, Shanxi Normal University Taiyuan 030031 China bxl5630@mail.ustc.edu.cn.

RSC advances
|August 27, 2025

PubMed で要約を見る

まとめ
この要約は機械生成です。

分子内水素結合は,光染料の歪んだ分子内電荷移転 (TICT) を防止し,安定性を高める. 分子間水素結合はTICT状態の寿命を延長し,染料設計の洞察を提供します.

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関連する実験動画

Vibrational Spectra of a N719-Chromophore/Titania Interface from Empirical-Potential Molecular-Dynamics Simulation, Solvated by a Room Temperature Ionic Liquid
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Isotopic Effect in Double Proton Transfer Process of Porphycene Investigated by Enhanced QM/MM Method
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Developing Photosensitizer-Cobaloxime Hybrids for Solar-Driven H2 Production in Aqueous Aerobic Conditions
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科学分野:

  • 写真化学
  • 材料科学
  • 有機化学

背景:

  • 歪んだ分子内伝送 (TICT) は光材料の特性にとって極めて重要です.
  • TICTのダイナミクスに対する分子内水素結合の影響は十分に研究されていない.
  • TICTを理解することは 安定した効率的な光染料の設計の鍵です

研究 の 目的:

  • TICTにおける分子内水素結合の役割を調査する.
  • クマリン染料C7とC30におけるTICTに対する溶媒の極性効果を明らかにする.
  • 新しい光染料の設計と適切な溶媒の選択のための洞察を提供します.

主な方法:

  • 安定状態と一時的な吸収スペクトロスコーピー
  • カムレット・タフトとカタランの4P溶媒の極性モデル
  • 時間依存密度関数理論 (TDDFT) の計算

主要な成果:

  • クマリンC30は,様々な溶剤で重要なTICTプロセスを示しています.
  • クマリンC7は分子内水素結合により平面性を維持し,TICTを回避する.
  • C30/MeOHにおける分子間水素結合は,C30/ACNと比較してTICT状態の寿命を延長する.

結論:

  • 分子内水素結合はTICTを効果的に抑制し,染料の安定性を高める.
  • 溶媒の相互作用,特に分子間水素結合は,TICT状態のダイナミクスを調節する.
  • この発見は,カスタマイズされた光物理的特性を持つ光カマリンの合理的な設計を導く.