2021Reaction Chemistry & EngineeringRequires access

Solvent-free liquid-phase selective catalytic oxidation of toluene to benzyl alcohol and benzaldehyde over CeO 2 –MnO x composite oxides

Gui Chen, Kuiyi You, Xiangbo Gong, Fangfang Zhao, Zhenpan Chen, He’an Luo

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Abstract

A novel CeO 2 –MnO x composite oxide was prepared by the improved sol–gel method. The synergistic catalysis of Mn 3+ /Mn 2+ and Ce 4+ /Ce 3+ was responsible for the good catalytic performance in the liquid phase solvent-free selective oxidation of toluene.

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What this paper is about

A novel CeO 2 –MnO x composite oxide was prepared by the improved sol–gel method. The synergistic catalysis of Mn 3+ /Mn 2+ and Ce 4+ /Ce 3+ was responsible for the good catalytic performance in the liquid phase solvent-free selective oxidation of toluene.

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OpenAlex reports 28 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

A novel CeO 2 –MnO x composite oxide was prepared by the improved sol–gel method. The synergistic catalysis of Mn 3+ /Mn 2+ and Ce 4+ /Ce 3+ was responsible for the good catalytic performance in the liquid phase solvent-free selective oxidation of toluene.

Key concepts: Toluene, Benzaldehyde, Benzyl alcohol, Catalysis, Composite number, Solvent, Phase (matter), Chemistry

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Solvent-free liquid-phase selective catalytic oxidation of toluene to benzyl alcohol and benzaldehyde over CeO 2 –MnO x composite oxides — Research Paper | ScholarLens