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相关概念视频

Carbon Skeletons01:12

Carbon Skeletons

Life on Earth is carbon-based, as all macromolecules that make up living organisms contain carbon atoms. All organic compounds have a carbon backbone. Each carbon atom is tetravalent and can bond with four other atoms, making it an extraordinarily flexible component of biological molecules. Because carbon’s valence electrons are stable, it rarely becomes an ion. As the carbon chain increases in length, structural modifications such as ring structures, double bonds, and branching side chains...
Carboxylic Acid Derivatives: Overview01:15

Carboxylic Acid Derivatives: Overview

Carboxylic acid derivatives are formed by replacing the hydroxyl group of carboxylic acids with a different functional group. The most common carboxylic acid derivatives are:
Radical Chain-Growth Polymerization: Mechanism01:09

Radical Chain-Growth Polymerization: Mechanism

The radical chain-growth polymerization mechanism consists of three steps: initiation, propagation, and termination of polymerization. The polymerization initiates when a free radical generated from the radical initiator adds to the unsaturated bond in the monomer. The unpaired electron of the free radical and one π electron in the unsaturated bond creates a σ bond between the free radical and the monomer. As a result, the other π electron in the unsaturated bond converts this species into the...
Radical Chain-Growth Polymerization: Chain Branching01:17

Radical Chain-Growth Polymerization: Chain Branching

The skeletal structure of polymers synthesized via radical polymerization is always branched. For example, the polymerization of ethylene by radical polymerization results in a low-density grade of polyethylene with a heavily branched skeletal structure. Here, the radical site abstracts hydrogen from the growing chain, and the radical site shifts from the end (a primary carbon center) to anywhere within the growing chain (a secondary carbon center). Consequently, the part of the chain from the...
Cationic Chain-Growth Polymerization: Mechanism00:57

Cationic Chain-Growth Polymerization: Mechanism

The cationic polymerization mechanism consists of three steps: initiation, propagation, and termination. In the initiation step of the polymerization process, the π bond of a monomer gets protonated by the Lewis acid catalyst, which is formed from boron trifluoride and water. The protonation of the π bond generates a carbocation stabilized by the electron‐donating group. In the propagation step, the π bond of the second monomer acts as a nucleophile and attacks the generated carbocation,...
Alkylation of β-Ketoester Enolates: Acetoacetic Ester Synthesis01:07

Alkylation of β-Ketoester Enolates: Acetoacetic Ester Synthesis

Acetoacetic ester synthesis is a method to obtain ketones from alkyl halides and β-keto esters. The reaction occurs in the presence of an alkoxide base that abstracts the acidic proton of the β-keto esters. The step results in an enolate ion which is doubly stabilized. The enolate then reacts with an alkyl halide via the SN2 process to produce an alkylated ester intermediate with a new C–C bond. The hydrolysis of the intermediate, followed by acidification, results in an alkylated β-keto acid.

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相关实验视频

Updated: Jul 11, 2026

Characterization, Quantification and Compound-specific Isotopic Analysis of Pyrogenic Carbon Using Benzene Polycarboxylic Acids (BPCA)
08:12

Characterization, Quantification and Compound-specific Isotopic Analysis of Pyrogenic Carbon Using Benzene Polycarboxylic Acids (BPCA)

Published on: May 16, 2016

从线性基二烯碳通过三甲基二烯二烯酸产生的三基.

Hee-Yoon Lee1, Yeonjoon Kim

  • 1Center for Molecular Design & Synthesis, School of Molecular Science (BK21) and Department of Chemistry, Korea Advanced Institute of Science & Technology, Daejon, 305-701, Korea. leehy@kaist.ac.kr

Journal of the American Chemical Society
|August 21, 2003
PubMed
概括

一种新的双重循环添加反应可以高精度地创建复杂的三结构. 这种方法在14个步骤的合成中成功地使用了天然产品 hirsutene.

科学领域:

  • 有机化学 有机化学
  • 合成化学 合成化学

背景情况:

  • 内部分子反应为复杂的分子架构提供了高效的途径.
  • 三甲基二烯酸是有机合成中的多功能中间体.

研究的目的:

  • 开发一种新的双重循环加法反应,用于合成线性合的三基.
  • 为了将这种反应应用于hirsutene的总合成中.

主要方法:

  • 通过基立碳酸的分子内循环化生成三甲基二.
  • 执行一个分子内 [2+3] 循环添加反应.
  • 在多步合成中应用双重反应.

主要成果:

  • 线性合的三角形的区域和立体选择性形成.
  • 成功完成了14个步骤的希尔苏总合成.
  • 在复杂分子合成中证明反应的实用性.

结论:

  • 开发的双重循环加法是构建三酸框架的强大工具.
  • 这种方法提供了一个有效的途径,以天然产品,如 hirsutene.

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