Synthesis 2025; 57(12): 1965-1974
DOI: 10.1055/a-2560-7930
paper

A Green and Efficient Synthesis of 3-Hydroxy-4-methoxycinnamaldehyde via a Calcium Oxide–Ethanol Heterogeneous System

Boxun Duan
,
Jiangyuan Sun
,
Zhan Deng
,
Junzhang Li

The authors are grateful for the financial assistance received from the National Basic Research Program of China (No. 2012CB723501).


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Abstract

3-Hydroxy-4-methoxycinnamaldehyde is an important organic intermediate primarily synthesized via the aldol condensation of isovanillin and vinyl acetate. Traditional synthetic processes typically employ sodium hydroxide in aqueous solution, which results in low product yields and generates large quantities of wastewater. In this study, calcium oxide is utilized as an alternative to sodium hydroxide, and the aldol condensation is carried out in anhydrous ethanol. Calcium oxide not only serves as a basic catalyst for the aldol condensation reaction but also reacts with the generated water to form calcium hydroxide, thereby removing water from the reaction system. This effectively shifts the equilibrium of the aldol condensation reaction, leading to a higher conversion rate of isovanillin and a significantly improved yield of 3-hydroxy-4-methoxycinnamaldehyde, reaching 85.2%. This study provides a novel and efficient green synthetic approach to 3-hydroxy-4-methoxycinnamaldehyde, offering significant potential for industrial applications.

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Publication History

Received: 20 January 2025

Accepted after revision: 17 March 2025

Accepted Manuscript online:
17 March 2025

Article published online:
17 April 2025

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