Selective synthesis of phosphate mono-esters with an acidic modified niobium oxide catalyst

Jens Wéry, Sofia Radelicki, Thomas J.N. Hooper, Margot Houbrechts, Kwinten Janssens, Wouter Stuyck, Dimitrios Sakellariou, Dirk E. De Vos
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Abstract

The atom-efficient esterification of phosphoric acid was investigated for the selective synthesis of phosphate mono-esters using an acid treated niobium oxide catalyst, avoiding the use of amines as is common in literature. Kinetic studies revealed that the heterogeneous catalyst exhibited higher selectivity for mono-esters compared to homogeneous acid catalysts, as supported by calculation of the relative reactivity of mono-ester and phosphoric acid with different catalysts. To characterize the catalyst, its Hammett acidity value (H0) was determined, while solid state 31P NMR enabled studying the adsorption of H3PO4. Due to the mild acidity of the niobium oxide, alcohols with acid-sensitive functions, including substituted double bonds, could be phosphorylated, enabling the synthesis of surfactants such as oleyl phosphate.

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酸性修饰氧化铌催化剂选择性合成磷酸单酯
研究了磷酸的原子高效酯化反应,使用酸处理的氧化铌催化剂选择性合成磷酸单酯,避免了文献中常见的胺的使用。动力学研究表明,与均相酸催化剂相比,多相催化剂对单酯具有更高的选择性,计算了不同催化剂对单酯和磷酸的相对反应活性。为了对催化剂进行表征,测定了其Hammett酸度值(H0),同时研究了固态31P NMR对H3PO4的吸附。由于氧化铌的温和酸性,具有酸敏感功能的醇,包括取代双键,可以被磷酸化,从而合成油酰磷酸等表面活性剂。
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