The anthropogenic climate changes caused by meeting the energy demands of society by use of fossil fuels render the development of benign alternatives imperative. Probably, the most promising alternative is generating energy by means of power units driven by, e.g., solar, wind, water, etc., and then storing the energy that is not immediately used in battery type devices. Such a device might consist of hydrogen chemically stored as alcohol(s). The advantage of this method is that it allows gaseous hydrogen to be stored much more efficiently when liquefied as an alcohol. Moreover, as will be shown in this review, it is possible to release the hydrogen under mild conditions when employing homogeneous catalysis. This review considers the kineti...
Acceptorless dehydrogenation of alcohols has emerged as a powerful methodology for the valorization ...
Hydrogenation and dehydrogenation on Pd- and Pt- catalysts are encountered in many industrial hydroc...
Securing the world's clean energy future in the form of sustainable H₂ generation is a key challenge...
Acceptorless dehydrogenation into carbonyls and molecular hydrogen is an attractive strategy to valo...
Hydrogen gas is a storable form of chemical energy that could complement intermittent renewable ener...
Although the selective oxidation of alcohols to carbonyl compounds is a critical reaction, it is oft...
The possibility to implement both the exhaustive dehydrogenation of aqueous methanol to hydrogen and...
As the world pledges to significantly cut carbon emissions, the demand for sustainable and clean ene...
Biowaste derived ethanol is an important feedstock for carbon neutral hydrogen production. It is liq...
Investigating bioethanol as a renewable energy source is crucial in the context of H2-based economy....
SSCI-VIDE+CDURABLE+LRN:LDJ:NPRNational audienceAcceptor-less alcohol dehydrogenation (AAD) is a gree...
The dehydrogenation of formic acid permits the production of hydrogen virtually free of carbon monox...
The activation energies of dehydrogenation of primary and secondary alcohols were determined on Rane...
The kinetics of the selective oxidative dehydrogenation of ethanol to ethanal over a platinum on gra...
Formic acid has recently been considered as one of the most promising hydrogen storage materials. Th...
Acceptorless dehydrogenation of alcohols has emerged as a powerful methodology for the valorization ...
Hydrogenation and dehydrogenation on Pd- and Pt- catalysts are encountered in many industrial hydroc...
Securing the world's clean energy future in the form of sustainable H₂ generation is a key challenge...
Acceptorless dehydrogenation into carbonyls and molecular hydrogen is an attractive strategy to valo...
Hydrogen gas is a storable form of chemical energy that could complement intermittent renewable ener...
Although the selective oxidation of alcohols to carbonyl compounds is a critical reaction, it is oft...
The possibility to implement both the exhaustive dehydrogenation of aqueous methanol to hydrogen and...
As the world pledges to significantly cut carbon emissions, the demand for sustainable and clean ene...
Biowaste derived ethanol is an important feedstock for carbon neutral hydrogen production. It is liq...
Investigating bioethanol as a renewable energy source is crucial in the context of H2-based economy....
SSCI-VIDE+CDURABLE+LRN:LDJ:NPRNational audienceAcceptor-less alcohol dehydrogenation (AAD) is a gree...
The dehydrogenation of formic acid permits the production of hydrogen virtually free of carbon monox...
The activation energies of dehydrogenation of primary and secondary alcohols were determined on Rane...
The kinetics of the selective oxidative dehydrogenation of ethanol to ethanal over a platinum on gra...
Formic acid has recently been considered as one of the most promising hydrogen storage materials. Th...
Acceptorless dehydrogenation of alcohols has emerged as a powerful methodology for the valorization ...
Hydrogenation and dehydrogenation on Pd- and Pt- catalysts are encountered in many industrial hydroc...
Securing the world's clean energy future in the form of sustainable H₂ generation is a key challenge...