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相关概念视频

Chirality in Nature02:30

Chirality in Nature

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Chirality is the most intriguing yet essential facet of nature, governing life’s biochemical processes and precision. It can be observed from a snail shell pattern in a macroscopic world to an amino acid, the minutest building block of life. Most of the snails around the world have right-coiled shells because of the intrinsic chirality in their genes. All the amino acids present in the human body exist in an enantiomerically pure state, except for glycine - the sole achiral amino acid.
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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...
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Prochirality02:05

Prochirality

3.8K
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...
3.8K
Molecules with Multiple Chiral Centers02:25

Molecules with Multiple Chiral Centers

11.8K
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...
11.8K
Chirality at Nitrogen, Phosphorus, and Sulfur02:30

Chirality at Nitrogen, Phosphorus, and Sulfur

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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...
5.7K
Stereoisomerism of Cyclic Compounds02:33

Stereoisomerism of Cyclic Compounds

8.9K
In this lesson, we delve into the role of ring conformation and its stability, which determines the spatial arrangement and, consequently, the molecular symmetry and stereoisomerism of cyclic compounds. 1,2-Dimethylcyclohexane is used as a case study to evaluate the possible number of stereoisomers. Here, given the multiple (n = 2) chiral centers, there are 2n = 4 possible configurations that lack a plane of symmetry, as the ring skeleton exists in a non-planar chair conformation. In addition,...
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相关实验视频

Updated: Jul 12, 2025

Construction and Systematical Symmetric Studies of a Series of Supramolecular Clusters with Binary or Ternary Ammonium Triphenylacetates
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Construction and Systematical Symmetric Studies of a Series of Supramolecular Clusters with Binary or Ternary Ammonium Triphenylacetates

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奇拉性超分子系统:螺旋组件,结构设计和功能

Shengzhe Jia1, Tiantian Tao1, Yujiang Xie1

  • 1State Key Laboratory of Chemical Engineering, School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300072, China.

Small (Weinheim an der Bergstrasse, Germany)
|October 27, 2023
PubMed
概括

状超分子材料表现出来自其独特螺旋组件的显著特性. 本综述详细介绍了它们的设计策略,性转移机制以及功能材料和生物医学中的各种应用.

关键词:
奇拉性转移是指奇拉性的转移.功能设计,功能设计.螺旋结构的螺旋结构.超分子性 超分子性扭曲的堆叠方式

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Controlling the Size, Shape and Stability of Supramolecular Polymers in Water
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Self-assembling Morphologies Obtained from Helical Polycarbodiimide Copolymers and Their Triazole Derivatives
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相关实验视频

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Construction and Systematical Symmetric Studies of a Series of Supramolecular Clusters with Binary or Ternary Ammonium Triphenylacetates
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Controlling the Size, Shape and Stability of Supramolecular Polymers in Water
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Controlling the Size, Shape and Stability of Supramolecular Polymers in Water

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Self-assembling Morphologies Obtained from Helical Polycarbodiimide Copolymers and Their Triazole Derivatives
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科学领域:

  • 超分子化学 超分子化学
  • 材料科学 材料科学 材料科学
  • 有机化学 有机化学

背景情况:

  • 性是一种在自然系统中观察到的基本性质.
  • 由宿主-客人相互作用产生的超分子性,为先进的功能材料提供了显著的潜力.
  • 了解和控制超分子性对于开发新型材料至关重要.

研究的目的:

  • 为了提供一个全面的概述,近期的进步在奇拉超分子材料.
  • 总结设计策略,性转移机制和功能应用.
  • 突出这些材料在各种科学和技术领域的潜力.

主要方法:

  • 关于性超分子结构设计的文献综述.
  • 对性逆转和放大机制的分析.
  • 在超分子性系统中检查结构属性关系.

主要成果:

  • 已经确定了性超分子结构的三个主要设计路径:模板诱导,化学合成和扭曲组装.
  • 从分子到宏观尺度的奇拉性转移是通过反转和放大机制解释的,受外部刺激的影响.
  • 超分子性材料表现出光学活性和层次堆叠,导致智能反应,形状记忆,增强的机械性能和生物医学应用.

结论:

  • 状超分子材料代表着具有多样性应用的功能性材料的有希望的类别.
  • 扭曲组装技术为创建奇拉材料提供了替代途径.
  • 对超分子性系统的持续研究将推动材料科学及其他领域的创新.