Jove
Visualize
联系我们
JoVE
x logofacebook logolinkedin logoyoutube logo
关于 JoVE
概览领导团队博客JoVE 帮助中心
作者
出版流程编辑委员会范围与政策同行评审常见问题投稿
图书馆员
用户评价订阅访问资源图书馆顾问委员会常见问题
研究
JoVE JournalMethods CollectionsJoVE Encyclopedia of Experiments存档
教育
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab Manual教师资源中心教师网站
使用条款与条件
隐私政策
政策

相关概念视频

Formal Charges02:42

Formal Charges

In some cases, there are seemingly more than one valid Lewis structures for molecules and polyatomic ions. The concept of formal charges can be used to help predict the most appropriate Lewis structure when more than one reasonable structure exists.
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
Chirality at Nitrogen, Phosphorus, and Sulfur02:30

Chirality at Nitrogen, Phosphorus, and Sulfur

Chirality is most prevalent in carbon-based tetrahedral compounds, but this important facet of molecular symmetry extends to sp3-hybridized nitrogen, phosphorus and sulfur centers, including trivalent molecules with lone pairs. Here, the lone pair behaves as a functional group in addition to the other three substituents to form an analogous tetrahedral center that can be chiral.
A consequence of chirality is the need for enantiomeric resolution. While this is theoretically possible for all...
Structure of Amines01:19

Structure of Amines

The hybridized nitrogen atom in amines possesses a lone pair of electrons and is bound to three substituents with a bond angle of around 108°, which is less than the tetrahedral angle of 109.5°. However, the C–N–H bond angle is slightly larger at 112°, with a carbon–nitrogen bond length of 147 pm. This carbon–nitrogen bond length of of amines is longer than the carbon–oxygen bond of alcohols (143 pm) but shorter than alkanes’ carbon–carbon bond (154 pm). These aspects are illustrated in Figure...
NMR Spectroscopy of Benzene Derivatives01:37

NMR Spectroscopy of Benzene Derivatives

Simple unsubstituted benzene has six aromatic protons, all chemically equivalent. Therefore, benzene exhibits only a singlet peak at δ 7.3 ppm in the 1H NMR spectrum. The observed shift is far downfield because the aromatic ring current strongly deshields the protons. Any substitution on the benzene ring makes the aromatic protons nonequivalent, and the protons split each other. The peak is, therefore, no longer a singlet and the splitting pattern and their associated coupling constants depend...
π Electron Effects on Chemical Shift: Aromatic and Antiaromatic Compounds01:14

π Electron Effects on Chemical Shift: Aromatic and Antiaromatic Compounds

In aromatic compounds, such as benzene, the circulation of (4n + 2) π-electrons sets up a diamagnetic or diatropic ring current around the perimeter of the molecule. This current induces a magnetic field that opposes the external field inside the ring and reinforces it on the outside. The protons in benzene are deshielded and exhibit high chemical shifts in the range 6.5–8.5 ppm. The shielding effect at the center of the ring is evident in complex aromatic molecules, such as annulenes. In...

您也可能阅读

相关文章

通过共同作者、期刊和引用图与本文相关的文章。

排序
Same author

Correction: Insights into the structural changes that trigger receptor binding upon proteolytic activation of Bacillus thuringiensis Vip3Aa insecticidal protein.

PLoS pathogens·2026
Same author

Patient journey and disparities in the diagnosis and treatment of patients with hidradenitis suppurativa.

JID innovations : skin science from molecules to population health·2026
Same author

Genome editing of ABCB6 transporter confers resistance to cypermethrin in the major pest of corn, Spodoptera frugiperda.

Insect biochemistry and molecular biology·2026
Same author

Engineering Bacillus thuringiensis Cyt1Aa to function as a surrogate receptor of Cry1A lepidopteran insecticidal proteins.

Pesticide biochemistry and physiology·2026
Same author

Regulatory diversity in Bacillus thuringiensis cry genes reveals flexible evolutionary strategies for in vivo toxin expression.

PLoS pathogens·2026
Same author

Pyrene-Bridged Tetrathienyles: Synthesis and Photochromism.

The Journal of organic chemistry·2025

相关实验视频

Updated: Jun 25, 2026

Spatial Separation of Molecular Conformers and Clusters
10:37

Spatial Separation of Molecular Conformers and Clusters

Published on: January 9, 2014

在4-aminobenzonitriles中的分子内电荷转移不一定需要扭曲.

Isabel Gómez1, Mar Reguero, Martial Boggio-Pasqua

  • 1Departament de Química Física i Inorgànica, Pl. Imperial Tarraco 1, 43005 Tarragona, Spain.

Journal of the American Chemical Society
|May 12, 2005
PubMed
概括
此摘要是机器生成的。

像DMABN这样的电子捐赠/接受分子中的双光源来自局部激发和扭曲的分子内电荷转移状态. 该机制依赖于氨基扭转路径和无辐射衰变,解释了DMABN中的双光,但不是ABN.

更多相关视频

1,3,5-Triphenylbenzene and Corannulene as Electron Receptors for Lithium Solvated Electron Solutions
06:56

1,3,5-Triphenylbenzene and Corannulene as Electron Receptors for Lithium Solvated Electron Solutions

Published on: October 10, 2016

Vibrational Spectra of a N719-Chromophore/Titania Interface from Empirical-Potential Molecular-Dynamics Simulation, Solvated by a Room Temperature Ionic Liquid
08:54

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

相关实验视频

Last Updated: Jun 25, 2026

Spatial Separation of Molecular Conformers and Clusters
10:37

Spatial Separation of Molecular Conformers and Clusters

Published on: January 9, 2014

1,3,5-Triphenylbenzene and Corannulene as Electron Receptors for Lithium Solvated Electron Solutions
06:56

1,3,5-Triphenylbenzene and Corannulene as Electron Receptors for Lithium Solvated Electron Solutions

Published on: October 10, 2016

Vibrational Spectra of a N719-Chromophore/Titania Interface from Empirical-Potential Molecular-Dynamics Simulation, Solvated by a Room Temperature Ionic Liquid
08:54

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

科学领域:

  • 摄影化学的使用.
  • 分子光谱学 分子光谱学
  • 量子化学 是一个量子化学.

背景情况:

  • 电子捐赠/接受分子表现出复杂的兴奋状态动态.
  • 在一些分子中观察到双光,源自多个发射状态.

研究的目的:

  • 为了阐明分子内电荷转移 (ICT) 的详细机制,在4-二甲基氨基二 (DMABN) 和4-氨基二 (ABN) 中.
  • 解释导致DMABN中双光和ABN中不存在的条件.

主要方法:

  • 激发状态潜在能量表面的理论研究.
  • 分析反应坐标,形交叉点和能量障碍.
  • 研究无辐射衰变路径和光机制.

主要成果:

  • 在DMABN和ABN中,S(2) /S(1) 的内部转换通过可通过一系列氨基扭矩角度的形交叉发生.
  • 在DMABN中,双光是由局部激发 (LE) 和扭曲的分子内电荷转移 (TICT) 状态的相似稳定性所促进的.
  • 在ABN中,TICT状态在能量方面不利,对LE的障碍较低,防止双光.

结论:

  • 观察到的双光是由S(1) 扭曲反应路径与S(2)/S(1) 在圆交叉上的无辐射衰变位置之间的相互作用决定的.
  • 对LE和TICT状态的相对稳定性是观察双光的关键决定因素.