Recently, there has been a strong demand for technologies that use hydrogen as an energy carrier, instead of fossil fuels. Hence, new and effective hydrogen storage technologies are attracting increasing attention. Formic acid (FA) is considered an effective liquid chemical for hydrogen storage because it is easier to handle than solid or gaseous materials. This review presents recent advances in research into the development of homogeneous catalysts, primarily focusing on hydrogen generation by FA dehydrogenation. Notably, this review will aid in the development of useful catalysts, thereby accelerating the transition to a hydrogen-based society
This tutorial review describes recent progress in the development of homogeneous catalytic methodolo...
Hydrogen is a clean and efficient energy carrier, and a hydrogen-based economy is an alternative sol...
Hydrogen is a clean and efficient energy carrier, and a hydrogen-based economy is an alternative sol...
Development of technologies using hydrogen as an energy carrier instead of fossil fuels is strongly ...
Formic acid has recently been considered as one of the most promising hydrogen storage materials. Th...
Hydrogen gas is a storable form of chemical energy that could complement intermittent renewable ener...
Formic acid (FA) possesses a high volumetric concentration of H2 (53 g L−1). Moreover, it can be eas...
This article belongs to the Special Issue Organometallic Homogeneous Catalysis.Formic acid (FA) poss...
The development of low-carbon technologies that will facilitate the efficient use of hydrogen (H2) a...
The development of low-carbon technologies that will facilitate the efficient use of hydrogen (H2) a...
A robust catalyst for the selective dehydrogenation of formic acid to liberate hydrogen gas has been...
The need for sustainable energy sources is now more urgent than ever, and hydrogen is significant in...
Hydrogen is a clean and efficient energy carrier, and a hydrogen-based economy is an alternative sol...
Hydrogen is a clean and efficient energy carrier, and a hydrogen-based economy is an alternative sol...
Hydrogen is a clean and efficient energy carrier, and a hydrogen-based economy is an alternative sol...
This tutorial review describes recent progress in the development of homogeneous catalytic methodolo...
Hydrogen is a clean and efficient energy carrier, and a hydrogen-based economy is an alternative sol...
Hydrogen is a clean and efficient energy carrier, and a hydrogen-based economy is an alternative sol...
Development of technologies using hydrogen as an energy carrier instead of fossil fuels is strongly ...
Formic acid has recently been considered as one of the most promising hydrogen storage materials. Th...
Hydrogen gas is a storable form of chemical energy that could complement intermittent renewable ener...
Formic acid (FA) possesses a high volumetric concentration of H2 (53 g L−1). Moreover, it can be eas...
This article belongs to the Special Issue Organometallic Homogeneous Catalysis.Formic acid (FA) poss...
The development of low-carbon technologies that will facilitate the efficient use of hydrogen (H2) a...
The development of low-carbon technologies that will facilitate the efficient use of hydrogen (H2) a...
A robust catalyst for the selective dehydrogenation of formic acid to liberate hydrogen gas has been...
The need for sustainable energy sources is now more urgent than ever, and hydrogen is significant in...
Hydrogen is a clean and efficient energy carrier, and a hydrogen-based economy is an alternative sol...
Hydrogen is a clean and efficient energy carrier, and a hydrogen-based economy is an alternative sol...
Hydrogen is a clean and efficient energy carrier, and a hydrogen-based economy is an alternative sol...
This tutorial review describes recent progress in the development of homogeneous catalytic methodolo...
Hydrogen is a clean and efficient energy carrier, and a hydrogen-based economy is an alternative sol...
Hydrogen is a clean and efficient energy carrier, and a hydrogen-based economy is an alternative sol...