4.8 Review

Formic Acid as a Potential On-Board Hydrogen Storage Method: Development of Homogeneous Noble Metal Catalysts for Dehydrogenation Reactions

期刊

CHEMSUSCHEM
卷 14, 期 13, 页码 2655-2681

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/cssc.202100602

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energy conversion; formic acid; dehydrogenation; homogeneous catalysis; ligand effects

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This review discusses the potential of hydrogen as an energy carrier for renewable energy, particularly in on-board hydrogen fuel cells. It also highlights the limitations of mainstream hydrogen storage techniques for vehicle applications, as well as the significant potential of formic acid in hydrogen generation.
Hydrogen can be used as an energy carrier for renewable energy to overcome the deficiency of its intrinsically intermittent supply. One of the most promising application of hydrogen energy is on-board hydrogen fuel cells. However, the lack of a safe, efficient, convenient, and low-cost storage and transportation method for hydrogen limits their application. The feasibility of mainstream hydrogen storage techniques for application in vehicles is briefly discussed in this Review. Formic acid (FA), which can reversibly be converted into hydrogen and carbon dioxide through catalysis, has significant potential for practical application. Historic developments and recent examples of homogeneous noble metal catalysts for FA dehydrogenation are covered, and the catalysts are classified based on their ligand types. The Review primarily focuses on the structure-function relationship between the ligands and their reactivity and aims to provide suggestions for designing new and efficient catalysts for H-2 generation from FA.

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