Formic acid, the simplest carboxylic acid, is found in nature or can be easily synthesized in the laboratory (major by-product of some second generation biorefinery processes); it is also an important chemical due to its myriad applications in pharmaceuticals and industry. In recent years, formic acid has been used as an important fuel either without reformation (in direct formic acid fuel cells, DFAFCs) or with reformation (as a potential chemical hydrogen storage material). Owing to the better efficiency of DFAFCs compared to several other PEMFCs and reversible hydrogen storage systems, formic acid could serve as one of the better fuels for portable devices, vehicles and other energy-related applications in the future. This perspective is...
news & views activity of those surfaces. This allows the Oxford team to identify active catalyst...
Formic acid has recently been considered as one of the most promising hydrogen storage materials. Th...
The development of low-carbon technologies that will facilitate the efficient use of hydrogen (H2) a...
Formic acid, the simplest carboxylic acid, is found in nature or can be easily synthesized in the la...
In search for future energy supplies the application of hydrogen as an energy carrier is seen as a p...
The need for sustainable energy sources is now more urgent than ever, and hydrogen is significant in...
To make hydrogen a feasible energy carrier, its transformation into another chemical is advisible. F...
Hydrogen holds the potential to be one of the major energy carriers for the future. However, a hydro...
Hydrogen is a clean and efficient energy carrier, and a hydrogen-based economy is an alternative sol...
Hydrogen gas is a storable form of chemical energy that could complement intermittent renewable ener...
This year Mankind will release about 39 Gt carbon dioxide into the earth's atmosphere, where it acts...
Recently, there has been a strong demand for technologies that use hydrogen as an energy carrier, in...
Development of technologies using hydrogen as an energy carrier instead of fossil fuels is strongly ...
The urgent need to reduce CO2 emissions has motivated the development of CO2 capture and utilization...
Formic acid, containing 4.4 wt% of hydrogen, is a non-toxic liquid at ambient temperature and theref...
news & views activity of those surfaces. This allows the Oxford team to identify active catalyst...
Formic acid has recently been considered as one of the most promising hydrogen storage materials. Th...
The development of low-carbon technologies that will facilitate the efficient use of hydrogen (H2) a...
Formic acid, the simplest carboxylic acid, is found in nature or can be easily synthesized in the la...
In search for future energy supplies the application of hydrogen as an energy carrier is seen as a p...
The need for sustainable energy sources is now more urgent than ever, and hydrogen is significant in...
To make hydrogen a feasible energy carrier, its transformation into another chemical is advisible. F...
Hydrogen holds the potential to be one of the major energy carriers for the future. However, a hydro...
Hydrogen is a clean and efficient energy carrier, and a hydrogen-based economy is an alternative sol...
Hydrogen gas is a storable form of chemical energy that could complement intermittent renewable ener...
This year Mankind will release about 39 Gt carbon dioxide into the earth's atmosphere, where it acts...
Recently, there has been a strong demand for technologies that use hydrogen as an energy carrier, in...
Development of technologies using hydrogen as an energy carrier instead of fossil fuels is strongly ...
The urgent need to reduce CO2 emissions has motivated the development of CO2 capture and utilization...
Formic acid, containing 4.4 wt% of hydrogen, is a non-toxic liquid at ambient temperature and theref...
news & views activity of those surfaces. This allows the Oxford team to identify active catalyst...
Formic acid has recently been considered as one of the most promising hydrogen storage materials. Th...
The development of low-carbon technologies that will facilitate the efficient use of hydrogen (H2) a...