沃尔夫重排反应
沃尔夫重排反应(Wolff重排反应),即:α-重氮酮在光、热或过渡金属催化剂(如氧化银)作用下,放出氮气生成卡宾中间体,然后发生1,2-重排反应生成烯酮。该反应由陆德维希·沃尔夫在1912年发现。

单词 | Wolff rearrangement |
释义 |
Wolff rearrangement
中文百科
沃尔夫重排反应沃尔夫重排反应(Wolff重排反应),即:α-重氮酮在光、热或过渡金属催化剂(如氧化银)作用下,放出氮气生成卡宾中间体,然后发生1,2-重排反应生成烯酮。该反应由陆德维希·沃尔夫在1912年发现。 ![]()
英语百科
Wolff rearrangement 沃尔夫重排反应![]() ![]() ![]() ![]() The Wolff rearrangement is a reaction in organic chemistry in which an α-diazocarbonyl compound is converted into a ketene by loss of dinitrogen with accompanying 1,2-rearrangement. The Wolff rearrangement yields a ketene as an intermediate product, which can undergo nucleophilic attack with weakly acidic nucleophiles such as water, alcohols, and amines, to generate carboxylic acid derivatives or undergo [2+2] cycloaddition reactions to form four-membered rings. The mechanism of the Wolff rearrangement has been the subject of debate since its first use. No single mechanism sufficiently describes the reaction, and there are often competing concerted and carbene-mediated pathways; for simplicity, only the textbook, concerted mechanism is shown below. The reaction was discovered by Ludwig Wolff in 1902. The Wolff rearrangement has great synthetic utility due to the accessibility of α-diazocarbonyl compounds, variety of reactions from the ketene intermediate, and stereochemical retention of the migrating group. However, the Wolff rearrangement has limitations due to the highly reactive nature of α-diazocarbonyl compounds, which can undergo a variety of competing reactions. |
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