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甲酸催化生物燃料加氢的钯基三元催化剂具有两种活性位。

Hydrogenation of biofuels with formic acid over a palladium-based ternary catalyst with two types of active sites.

机构信息

Key Laboratory of Applied Chemistry of Zhejiang Province, Zhejiang University, Hangzhou 310028 (PR China).

出版信息

ChemSusChem. 2014 Jun;7(6):1537-41. doi: 10.1002/cssc.201400039. Epub 2014 May 26.

Abstract

A composite catalyst including palladium nanoparticles on titania (TiO2) and on nitrogen-modified porous carbon (Pd/TiO2@N-C) is synthesized from palladium salts, tetrabutyl titanate, and chitosan. N2 sorption isotherms show that the catalyst has a high BET surface area (229 m(2)  g(-1)) and large porosity. XPS and TEM characterization of the catalyst shows that palladium species with different chemical states are well dispersed across the TiO2 and nitrogen-modified porous carbon, respectively. The Pd/TiO2@N-C catalyst is very active and shows excellent stability towards hydrogenation of vanillin to 2-methoxy-4-methylphenol using formic acid as hydrogen source. This activity can be attributed to a synergistic effect between the Pd/TiO2 (a catalyst for dehydrogenation of formic acid) and Pd/N-C (a catalyst for hydrogenation of vanillin) sites.

摘要

一种包括负载在二氧化钛(TiO2)和氮修饰多孔碳(Pd/TiO2@N-C)上的钯纳米粒子的复合催化剂,是由钯盐、钛酸四丁酯和壳聚糖合成的。N2 吸附等温线表明,该催化剂具有高的 BET 比表面积(229 m2 g-1)和大的孔隙率。对催化剂的 XPS 和 TEM 表征表明,具有不同化学状态的钯物种分别很好地分散在 TiO2 和氮修饰多孔碳上。Pd/TiO2@N-C 催化剂在甲酸作为氢源时,对香草醛加氢生成 2-甲氧基-4-甲基苯酚表现出很高的活性和极好的稳定性。这种活性可以归因于 Pd/TiO2(甲酸脱氢催化剂)和 Pd/N-C(香草醛加氢催化剂)位点之间的协同效应。

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