Prussian blue analogs photocatalyst promote the evolution of value‐added platform compounds via CoCNZn covalent bonds

Author:

Shi Junming12ORCID,Gao Guoyang12,Jin Can12,Wu Hongqing12,Wang Weizhen12,An Yulong12,Zhou Zhen3,Huang Zhanhua12,Chen Wenshuai1

Affiliation:

1. Key Laboratory of Bio‐based Material Science and Technology, Ministry of Education Northeast Forestry University Harbin China

2. Engineering Research Center of Advanced Wooden Materials, Ministry of Education Northeast Forestry University Harbin China

3. Engineering Research Center of Advanced Functional Material, Manufacturing of Ministry of Education Zhengzhou University Zhengzhou China

Abstract

AbstractValue‐added conversion of lignocellulose is a sustainable approach. Photo‐refining biomass is in line with current environmental protection strategies. However, photo‐reforming biomass suffers from poor catalyst stability and low conversion efficiency. Here, we designed fructose as a lignocellulosic model. The heterogeneous structure of Prussian blue coating was constructed with a special covalent bond structure of CoCNZn. This structure has a catalytic conversion mechanism that can accelerate electron transfer. Fructose was simultaneously converted to value‐added platform compounds (5‐HMF and formic acid) and gaseous fuels (CO, CH4) with a conversion rate of up to 92.5%, which is more than 1.7 times than that of catalysts without adding Prussian blue. Hydrogen transfer and carbon transfer on the carbon atoms of fructose facilitates the production and accelerates the spillover of CO from formic acid. This work provides new ideas for the development of Prussian blue catalysts and the conversion of pentose.image

Funder

National Natural Science Foundation of China

Publisher

Wiley

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