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相关概念视频

Aldehydes and Ketones with Amines: Imine Formation Mechanism01:23

Aldehydes and Ketones with Amines: Imine Formation Mechanism

5.3K
Imine formation involves the addition of carbonyl compounds to a primary amine. It begins with the generation of carbinolamine through a series of steps involving an initial nucleophilic attack and then several proton transfer reactions. The second part includes the elimination of water, as a leaving group, to give the imine.
Imines are formed under mildly acidic conditions. A pH of 4.5 is ideal for the reaction.
If the pH is low or the solution is too acidic, the reaction slows down in the...
5.3K
Aldehydes and Ketones with Amines: Imine and Enamine Formation Overview01:16

Aldehydes and Ketones with Amines: Imine and Enamine Formation Overview

4.4K
Primary amines react with carbonyl compounds—aldehydes and ketones—to generate imines. Imines consist of a C=N double bond and are named Schiff bases after its discoverer—the German chemist Hugo Schiff. On the other hand, secondary amines react with carbonyl compounds to give enamines. In enamines, the presence of a C=C double bond adjacent to the nitrogen atom leads to the delocalization of the lone pair.
4.4K
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
Structure of Amines01:19

Structure of Amines

2.5K
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’...
2.5K
Aromatic Hydrocarbon Cations: Structural Overview01:18

Aromatic Hydrocarbon Cations: Structural Overview

2.7K
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...
2.7K
Structural Isomerism02:34

Structural Isomerism

19.1K
Isomerism in Complexes
Isomers are different chemical species that have the same chemical formula. Structural isomerism of coordination compounds can be divided into two subcategories, the linkage isomers and coordination-sphere isomers.
Linkage isomers occur when the coordination compound contains a ligand that can bind to the transition metal center through two different atoms. For example, the CN− ligand can bind through the carbon atom or through the nitrogen atom. Similarly, SCN− can...
19.1K

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研究一个看似简单的共价有机框架结构

Cailing Chen1, Li Cao1, Yaozu Liu2

  • 1Physical Science and Engineering Division (PSE), Advanced Membranes and Porous Materials (AMPM) Center, King Abdullah University of Science and Technology (KAUST), Thuwal 23955-6900, Saudi Arabia.

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概括

先进的成像显示共价有机框架 (COF) 具有复杂的,不均的孔隙结构,挑战现有模型. 这一发现需要对COF结构及其在催化和分离中的应用进行重新评估.

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科学领域:

  • 材料科学
  • 化学学
  • 纳米技术

背景情况:

  • 共价有机框架 (COF) 的结构确定通常依赖于粉末X射线衍射 (PXRD).
  • 在COF中有限的晶体性往往导致低保真度的结构模型.
  • 现有的基于二维胺的突出COF模型假设均的六角孔.

研究的目的:

  • 使用真实空间成像,研究广泛的基于2D影像的COF的实际结构.
  • 挑战对COF孔隙均性的传统理解.
  • 为COF及其衍生品建立一个更准确的结构模型.

主要方法:

  • 现实空间成像 (例如传输电子显微镜).
  • 相互空间的表征 (例如,PXRD).
  • 固态核磁共振 (ssNMR) 光谱学
  • 密度函数理论 (DFT) 的计算.

主要成果:

  • 现实空间成像显示了两组不同的毛孔, 形状和大小各不相同,
  • 建立了一个新的结构模型,与传统模型的内部和间层配置不同.
  • 确定了以前未被识别的缺陷结构,影响了COF的功能.

结论:

  • 这种具有里程碑意义的COF结构比以前理解的要复杂和多样化.
  • 对于精确的COF结构确定,先进的表征技术至关重要.
  • 鉴定的缺陷对COF在分离和催化中的应用有重大影响.