从氨基和碳酸中形成铜催化直接胺键通过异酸盐激活
Pinyong Zhong1, Kunming Liu1, Fumin Liao1
1Jiangxi Provincial Key Laboratory of Functional Molecular Materials Chemistry, Jiangxi University of Science and Technology, Ganzhou 341000, China. liujinbiao@jxust.edu.cn.
Organic & biomolecular chemistry
|August 12, 2025
概括
这项研究引入了一种新型的催化方法,用于直接从未激活的碳酸盐酸中合成胺. 该过程使用铜介导脱硫生成碳二胺,使在温和条件下有效的胺基形成.
科学领域:
- 有机化学 有机化学
- 催化剂是一种催化剂.
- 合成方法论 合成方法论
背景情况:
- 从未激活的碳酸盐中直接合成胺仍然是有机化学的一个挑战.
- 现有的方法通常需要恶劣的条件或预激活的碳酸衍生物.
- 开发温和高效的催化协议对于更广泛的合成应用至关重要.
研究的目的:
- 开发一种高效的催化方法,用于从未激活的碳酸酸中直接合成胺.
- 探索使用铜介导脱硫的方法在现场产生反应性碳二胺.
- 调查电子效应对碳胺反应活性和反应选择性的影响.
主要方法:
- 氨基因与异基酸盐相结合,形成硫尿素中间体.
- 用铜为媒介的硫化脱硫的氨酸中间体在现场产生碳二胺.
- 在现场生成的碳二胺与未激活的碳酸盐反应形成胺.
主要成果:
- 建立了一种新的,高效的催化方法,用于直接合成胺.
- 该协议证明了广泛的功能组兼容性.
- 该方法在药物和的晚期功能化方面被证明是有效的.
结论:
- 开发的方法提供了一种温和而有效的途径,可以从未激活的碳酸中获得胺.
- 铜介导的碳二胺基生成为胺基键形成提供了一个多功能平台.
- 该协议代表了药物发现和化学中的后期功能化策略的重大进步.
相关概念视频
Preparation of Amides
3.2K
Amides are synthesized by treating carboxylic acids with amines in the presence of dehydrating agents like dicyclohexylcarbodiimide (DCC).
The DCC-promoted synthesis of amides begins with the protonation of DCC by carboxylic acid. The protonation makes it a better acceptor. Next, the addition of carboxylate to the protonated carbodiimide gives a reactive acylating agent.
Subsequently, the amine acts as a nucleophile that attacks the acylating agent to form a tetrahedral intermediate. In the...
The DCC-promoted synthesis of amides begins with the protonation of DCC by carboxylic acid. The protonation makes it a better acceptor. Next, the addition of carboxylate to the protonated carbodiimide gives a reactive acylating agent.
Subsequently, the amine acts as a nucleophile that attacks the acylating agent to form a tetrahedral intermediate. In the...
3.2K
Preparation of 1° Amines: Azide Synthesis
4.1K
Direct alkylation of ammonia produces polyalkylated amines, along with a quaternary ammonium salt. To exclusively prepare primary amines, the azide synthesis method can be used.
Azide ions act as good nucleophiles and react with unhindered alkyl halides to form alkyl azides. Alkyl azides do not participate in further nucleophilic substitution reactions, thereby eliminating the chances of polyalkylated products. Alkyl azides are reduced by hydride-based reducing agents, like lithium aluminum...
Azide ions act as good nucleophiles and react with unhindered alkyl halides to form alkyl azides. Alkyl azides do not participate in further nucleophilic substitution reactions, thereby eliminating the chances of polyalkylated products. Alkyl azides are reduced by hydride-based reducing agents, like lithium aluminum...
4.1K
Aldehydes and Ketones with Amines: Imine Formation Mechanism
6.4K
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...
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...
6.4K
Preparation of Nitriles
2.2K
One of the common methods to prepare nitriles is the dehydration of amides. This method requires strong dehydrating agents like phosphorous pentoxide or boiling acetic anhydride for converting amides to nitriles. Another reagent namely, thionyl chloride also accomplishes the dehydration of amides, where amide acts as a nucleophile. The first step of the mechanism involves the nucleophilic attack by the amide on the thionyl chloride to form an intermediate. In the next step, the electron pairs...
2.2K
Amines to Amides: Acylation of Amines
2.7K
Various carboxylic acid derivatives (such as acid chlorides, esters, and anhydrides) can be used for the acylation of amines to yield amides. The reaction requires two equivalents of amines. The first amine molecule functions as a nucleophile and attacks the carbonyl carbon to produce a tetrahedral intermediate. This is followed by the loss of the leaving group and restoration of the C=O bond.
Next, the second equivalent of amine serves as a Brønsted base and deprotonates the quaternary...
Next, the second equivalent of amine serves as a Brønsted base and deprotonates the quaternary...
2.7K
Aldehydes and Ketones with Amines: Imine and Enamine Formation Overview
5.0K
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.
5.0K


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