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相关概念视频

Conformations of Cyclohexane02:11

Conformations of Cyclohexane

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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...
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Chair Conformation of Cyclohexane02:02

Chair Conformation of Cyclohexane

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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...
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Chirality02:25

Chirality

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Chirality is a term that describes the lack of mirror symmetry in an object. In other words, chiral objects cannot be superposed on their mirror images. For example, our feet are chiral, as the mirror image of the left foot, the right foot, cannot be superposed on the left foot.
Chiral objects exhibit a sense of handedness when they interact with another chiral object. For example, our left foot can only fit in the left shoe and not in the right shoe. Achiral objects — objects that have...
28.9K
Molecules with Multiple Chiral Centers02:25

Molecules with Multiple Chiral Centers

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Molecules that possess multiple chiral centers can afford a large number of stereoisomers. For instance, while some molecules like 2-butanol have one chiral center, defined as a tetrahedral carbon atom with four different substituents attached, several molecules like butane-2,3-diol have multiple chiral centers. A simple formula to predict the number of stereoisomers possible for a molecule with n chiral centers is 2n. However, there can be a lower number where some of the stereoisomers are...
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Prochirality02:05

Prochirality

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The concept of prochirality leads to the nomenclature of the individual faces of a molecule and plays a crucial role in the enantioselective reaction. It is a concept where two or more achiral molecules react to produce chiral products. A typical process is the reaction of an achiral ketone to generate a chiral alcohol. Here, the achiral reactant reacts with an achiral reducing agent, sodium borohydride, to generate an equimolar mixture of the chiral enantiomers of the product. For example, an...
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Hybridization of Atomic Orbitals II03:35

Hybridization of Atomic Orbitals II

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sp3d and sp3d 2 Hybridization
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同体共价有机框架

Qianqian Yan1, Xingyao Ye2, Shanshan Tao2

  • 1School of Marine Technology and Equipment, State Key Laboratory of Tropic Ocean Engineering Materials and Materials Evaluation, Hainan Provincial Key Lab of Fine Chem, School of Chemistry and Chemical Engineering, Hainan University, Haikou 570228, China.

Journal of the American Chemical Society
|December 2, 2025
PubMed
概括

研究人员使用 [7] 乙烯反体合成了同体基框架. 这些奇拉材料具有增强的奇拉光学特性,为循环极化发光的先进应用铺平了道路.

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科学领域:

  • 材料科学
  • 有机化学
  • 超分子化学

背景情况:

  • 性在自然界中很普遍,但合成具有控制性的大分子是很困难的.
  • 螺旋体是有前途的体构建块, 但它们的整合需要先进的合成策略.

研究的目的:

  • 开发一种使用 [7] 的体合成方法.
  • 调查由此产生的框架的光学特性.

主要方法:

  • 通过奇拉柱色谱分离种族 [7] 成 P 和 M .
  • 阿尔多尔与1,3,5-trimethyltriazine的凝结反应形成P- [7] sp2c-COF-1和M- [7] sp2c-COF-1.
  • 晶体微孔框架及其光学特性.

主要成果:

  • 成功合成具有明显镜像圆形二重体的同体基 [7] sp2c-COF.
  • 在聚甲酸盐基层内形成的均薄膜.
  • 实现显著增强的圆二极化和圆极化发光,发光不对称系数高达1.2 × 10-3在570nm.

结论:

  • 证明了从 [7] 乙烯反体中创建同体性框架的可行方法.
  • 由于其增强的光学特性,合成的框架显示了光学应用的潜力.
  • 这项工作为设计具有量身定制的光反应的光材料提供了基础.