Efficient Electrocatalytic Oxidation of 5-Hydroxymethylfurfural Coupled with 4-Nitrophenol Hydrogenation in a Water System
Эффективное электрокаталитическое окисление 5-гидроксиметилфурфурола в сочетании с гидрированием 4-нитрофенола в водной системе
2022-01-11
SCID: 54.1/b9abzmup
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2,5-Furandicarboxylic acid5-Hydroxymethylfurfural oxidationCu(OH)2 copper foamCuOOH active speciesPaired electrochemical system
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Abstract (AI)
Electrocatalytic conversion of biomass-derived 5-hydroxymethylfurfural (HMF) to value-added 2,5-furandicarboxylic acid (FDCA) is of great significance for sustainable chemical production. The key challenge is to establish an electrocatalytic system with a wide potential window, which can selectively oxidize HMF to FDCA without causing water oxidation. In this study, Cu foam decorated with Cu(OH) 2 (CF-Cu(OH) 2 ) was successfully fabricated as an efficient catalyst, and CuOOH active species generated by electrochemistry were demonstrated as the main catalytic sites for HMF oxidation. As a result, the current density of CF-Cu(OH) 2 reached up to 198.2 mA/cm 2 (100 mM HMF, 1.0 M KOH, 0.8 V vs Ag/AgCl), and a high faradic efficiency close to 100% for FDCA production (yield: 98.7%) was realized. Moreover, we reveal the mechanism for the electro-oxidation of HMF to FDCA and further provide an insight into the oxidation pathway for HMF. A paired electrochemical system exhibits superior catalytic performance of synergetic reactions (HMF oxidation and 4-NP reduction). Therefore, this work proposes a strategy to simultaneously produce two types of value-added chemicals at both electrodes, which can be applied in other electrocatalytic systems for the green synthesis of organic compounds.
Key Findings
1
A paired electrochemical system coupled HMF oxidation with 4-nitrophenol reduction, enabling simultaneous production of two value-added chemicals at both electrodes.
2
Cu foam decorated with Cu(OH)2 was developed as an efficient electrocatalyst for selective HMF oxidation in aqueous alkaline solution.
3
Electrochemically generated CuOOH species were identified as the main active sites responsible for HMF oxidation.
4
The catalyst achieved 198.2 mA/cm² at 0.8 V versus Ag/AgCl and produced FDCA with nearly 100% Faradaic efficiency and 98.7% yield.
5
The study elucidated the electro-oxidation mechanism and pathway converting HMF to FDCA.
Research Object
Electrocatalytic conversion of 5-hydroxymethylfurfural (HMF) in an aqueous paired electrochemical system, using Cu foam decorated with Cu(OH)2 and coupled with 4-nitrophenol hydrogenation
Research Subject
Selective HMF oxidation to 2,5-furandicarboxylic acid (FDCA), including the CuOOH-mediated reaction mechanism, catalytic efficiency, and synergistic paired-electrode performance with 4-nitrophenol reduction
Publication Details
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2022-01-11
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