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相关概念视频

Alkylation of β-Diester Enolates: Malonic Ester Synthesis01:14

Alkylation of β-Diester Enolates: Malonic Ester Synthesis

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Malonic ester synthesis is a method to obtain α substituted carboxylic acids from ꞵ-diesters such as diethyl malonate and alkyl halides.
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Alkylation of β-Ketoester Enolates: Acetoacetic Ester Synthesis01:07

Alkylation of β-Ketoester Enolates: Acetoacetic Ester Synthesis

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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...
4.7K
Acid-Catalyzed α-Halogenation of Aldehydes and Ketones01:21

Acid-Catalyzed α-Halogenation of Aldehydes and Ketones

5.0K
By replacing an α-hydrogen with a halogen, acid-catalyzed α-halogenation of aldehydes or ketones yields a monohalogenated product
In the first step of the mechanism, the acid protonates the carbonyl oxygen resulting in a resonance-stabilized cation, which subsequently loses an α-hydrogen to form an enol tautomer. The C=C bond in an enol is highly nucleophilic because of the electron-donating nature of the –OH group. Consequently, the double bond attacks an electrophilic halogen to form a...
5.0K
α-Alkylation of Ketones via Enolate Ions01:10

α-Alkylation of Ketones via Enolate Ions

4.0K
Ketones with α protons are deprotonated by strong bases like lithium diisopropylamide (LDA) to form enolate ions. The anion is stabilized by resonance, and its hybrid structure exhibits negative charges on the carbonyl oxygen and the α carbon. This ambident nucleophile can attack an electrophile via two possible sites: the carbonyl oxygen, known as O-attack, or the α carbon, known as C-attack. The nucleophilic attack via the carbanionic site is preferred. This is due to the...
4.0K
Esters to β-Ketoesters: Claisen Condensation Mechanism01:08

Esters to β-Ketoesters: Claisen Condensation Mechanism

4.8K
Regular Claisen condensation involves the synthesis of β-ketoesters by combining identical ester molecules bearing two α hydrogens in the presence of an alkoxide base. The reaction commences with the deprotonation of the acidic α hydrogen by the base to form a resonance stabilized ester enolate. This nucleophilic ion then attacks the carbonyl center of another ester molecule to generate a tetrahedral alkoxide intermediate. Next, the expulsion of the alkoxide group from the...
4.8K
[3,3] Sigmatropic Rearrangement of Allyl Vinyl Ethers: Claisen Rearrangement01:24

[3,3] Sigmatropic Rearrangement of Allyl Vinyl Ethers: Claisen Rearrangement

2.9K
The Claisen rearrangement is a [3,3] sigmatropic rearrangement of allyl vinyl ethers to unsaturated carbonyl compounds. The rearrangement is a concerted pericyclic reaction proceeding via a chair-like transition state.
2.9K

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Efficient Construction of Drug-like Bispirocyclic Scaffolds Via Organocatalytic Cycloadditions of α-Imino γ-Lactones and Alkylidene Pyrazolones
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CO2-驱动的C-sp2) -H 乳酸化到2-奎诺林.

Hong Sun1, Duanyang Kong1

  • 1State Key Laboratory of Chemical Resource Engineering, Beijing Key Laboratory of Intelligent Design and Manufacturing for Hydrogen Energy Materials, Beijing University of Chemical Technology, Beijing 100029, China.

Organic letters
|February 23, 2026
PubMed
概括

这项研究引入了一种新的,不含金属的方法,用于利用二氧化碳 (CO2) 和亚醇基因合成2-诺. 这种可持续的方法提供了卓越的功能组耐受性,并使得重要的制药构建块的创建成为可能.

科学领域:

  • 有机化学 有机化学
  • 药用化学 医学化学
  • 可持续的合成 可持续的合成

背景情况:

  • 在许多制药剂中,2-奎诺林是关键的结构动图.
  • 目前对2-诺的合成方法通常需要恶劣的条件或过渡金属,这给可持续性带来了挑战.

研究的目的:

  • 开发一种新的,没有过渡金属的合成途径,以获得2-林.
  • 在有机合成中利用二氧化碳 (CO2) 作为可持续的单碳来源.
  • 为了实现各种2-类的温和有效合成,具有广泛的功能组耐受性.

主要方法:

  • 采用了一种没有过渡金属的C(sp2) -H乳化反应,对亚醇基因进行了反应.
  • 在轻度反应条件下,Dimethyl phenylphosphonite被用作关键试剂.
  • 二氧化碳 (CO2) 作为乳制剂的单碳来源.

主要成果:

  • 开发的方法成功合成了各种具有高产率和卓越的功能组耐受性的2-氨酸.
  • 这种反应证明了高效的13C标记,其结合率为99%,从而促进了同位素研究.
  • 实现了格拉姆尺度合成,突出了该方法的实际适用性.
  • 合成的2 - 诺可以进行进一步的下游功能化.

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结论:

  • 这项研究提出了一种多功能和可持续的替代方案,用于传统和金属催化方法的2-诺合成.
  • 没有过渡金属的方法在温和条件,功能组耐受性和可扩展性方面提供了显著的优势.
  • 该方法为制药应用提供了广泛的生物相关的2-氨衍生物.