Selective Electroreduction of 5‐Hydroxymethylfurfural to Dimethylfuran in Neutral Electrolytes via Hydrogen Spillover and Adsorption Configuration Adjustment

Author:

Wu Yandong1,Jiang Yimin1,Chen Wei1,Yue Xu1,Dong Chung‐Li2,Qiu Mengyi1,Nga Ta Thi Thuy2,Yang Ming1,Xia Zhongcheng1,Xie Chao3,Xu Leitao1,Wang Ruiqi1,Wang Shuangyin1,Zou Yuqin1ORCID

Affiliation:

1. State Key Laboratory of Chem/Bio‐Sensing and Chemometrics College of Chemistry and Chemical Engineering Hunan University Changsha Hunan 410082 P. R. China

2. Research Center for X‐ray Science & Department of Physics Tamkang University New Taipei City 25 137 Taiwan

3. College of Chemistry and Chemical Engineering Hunan Normal University Changsha Hunan 410081 P. R. China

Abstract

Abstract5‐Hydroxymethylfurfural (HMF), one of the essential C6 biomass derivatives, has been deeply investigated in electrocatalytic reduction upgrading. Nevertheless, the high product selectivity and rational design strategy of electrocatalysts for electrocatalytic HMF reduction is still a challenge. Here, a high selective electro‐reduction of HMF to dimethylfuran (DMF) on palladium (Pd) single atom loaded on titanium dioxide (Pd SA/TiO2) via hydrogen spillover and adsorption configuration adjustment in neutral electrolytes is achieved. Combining density functional theory calculations and in situ characterization, it is revealed that Pd single atom could weaken the interaction between Pd atoms and adsorbed hydrogen (*H) to promote the *H spillover for increasing *H coverage on the surface and maintain the tilted adsorption configuration to activate C═O bond; thus the selectivity of DMF on Pd SA/TiO2 increases to 90.33%. Besides, it is elaborated that low *H coverage on TiO2 favors the formation of bis(hydroxymethyl)hydro‐furoin (BHH), and the flat adsorption configuration of HMF on Pd nanoparticles benefits to form 2,5‐dihydroxymethylfuran (DHMF). This work provides a promising approach for modifying electrocatalysts to realize the selective electroreduction of HMF to value‐added products.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Natural Science Foundation of Hunan Province

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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