As concerns about rising fossil fuel prices, energy security, and climate change increase, alternative source of energy can play a key role in producing local, clean, and inexhaustible energy. A more viable alternative source of energy would be the employment of hydrogen. However, hydrogen cannot be stored easily. This led to the investigation of fuel cells that can produce hydrogen on board. Fuel cell, which is an electrochemical energy conversion device, has become a more environmentally friendly and realistic alternative to combustion engines. A hydrogen cell uses hydrogen as fuel and oxygen as oxidant, producing water as product, which does not harm environment. However, difficulties of transportation and danger of handling have...
Hydrogen has attracted growing attention for various uses, and, particularly, for polymer electrolyt...
Hydrogen production through methanol reforming processes has been stimulated over the years due to i...
The methane steam reforming (MSR) mechanism on the anatase TiO<sub>2</sub> (101) surface has been in...
To overcome the problem of depleting reserves of fossil fuels, hydrogen has been proposed as an alte...
ydrogen is considered by many to be a promising energy currency, particularly for the transportation...
Hydrogen production from methanol steam reforming (MSR) is attracting widespread attention in provid...
High CO<sub>2</sub> and H<sub>2</sub> selectivity are important issues for methanol steam reforming ...
Hydrogen is an attractive clean energy carrier as it is efficient, nonpolluting and inexhaustible fo...
Methanol steam reforming (MSR) is an important industrial process for hydrogen production, and funda...
Methanol steam reforming (MSR) is an important industrial process for hydrogen production, and funda...
Hydrogen is conventionally manufactured in large scale by the steam reforming of methane or naphthas...
Hydrogen is anticipated to become a major source of energy in the future. Hydrogen is a clean burnin...
Ethanol and dimethyl ether can be efficiently reformed with steam over appropriate catalysts for gen...
The decoration of a copper cluster on the anatase phase of a (101)-TiO2 surface to increase the redu...
Methanol steam reforming is a promising reaction for on-demand hydrogen production. Copper catalysts...
Hydrogen has attracted growing attention for various uses, and, particularly, for polymer electrolyt...
Hydrogen production through methanol reforming processes has been stimulated over the years due to i...
The methane steam reforming (MSR) mechanism on the anatase TiO<sub>2</sub> (101) surface has been in...
To overcome the problem of depleting reserves of fossil fuels, hydrogen has been proposed as an alte...
ydrogen is considered by many to be a promising energy currency, particularly for the transportation...
Hydrogen production from methanol steam reforming (MSR) is attracting widespread attention in provid...
High CO<sub>2</sub> and H<sub>2</sub> selectivity are important issues for methanol steam reforming ...
Hydrogen is an attractive clean energy carrier as it is efficient, nonpolluting and inexhaustible fo...
Methanol steam reforming (MSR) is an important industrial process for hydrogen production, and funda...
Methanol steam reforming (MSR) is an important industrial process for hydrogen production, and funda...
Hydrogen is conventionally manufactured in large scale by the steam reforming of methane or naphthas...
Hydrogen is anticipated to become a major source of energy in the future. Hydrogen is a clean burnin...
Ethanol and dimethyl ether can be efficiently reformed with steam over appropriate catalysts for gen...
The decoration of a copper cluster on the anatase phase of a (101)-TiO2 surface to increase the redu...
Methanol steam reforming is a promising reaction for on-demand hydrogen production. Copper catalysts...
Hydrogen has attracted growing attention for various uses, and, particularly, for polymer electrolyt...
Hydrogen production through methanol reforming processes has been stimulated over the years due to i...
The methane steam reforming (MSR) mechanism on the anatase TiO<sub>2</sub> (101) surface has been in...