The production of hydrogen through water splitting using earth-abundant metal catalysts is a promising pathway for converting solar energy into chemical fuels. However, existing approaches for fine stoichiometric control, structural and catalytic modification of materials by appropriate choice of earth abundant elements are either limited or challenging. Here we explore the tuning of redox active immobilised molecular metal-chalcoxide electrocatalysts by controlling the chalcogen or metal stoichiometry and explore critical aspects of the hydrogen evolution reaction (HER). Linear sweep voltammetry (LSV) shows that stoichiometric and structural control leads to the evolution of hydrogen at low overpotential with no catalyst degradation over 1...
The energetic needs of a rising human population have led to the search for alternative energy sourc...
Hydrogen (H2) is the most promising green energy resources to replace conventional fossil fuels due ...
Molecular metal chalcogenides have attracted great attention as electrocatalysts for the hydrogen ev...
The production of hydrogen through water splitting using earth-abundant metal catalysts is a promisi...
The production of hydrogen through water splitting using earth-abundant metal catalysts is a promisi...
Sustainable terawatt-scale energy solutions for a constantly evolving energy landscape necessitate t...
Providing energy for a population projected to reach 9 billion people within the middle of this cent...
Transition metal dichalcogenides are cheap and earth-abundant candidates for the replacement of prec...
A theoretical framework has been formulated to gain mechanistic insight into molecular hydrogen evol...
The demand for energy is growing exponentially, and to keep up with these demands new technologies f...
In response to political and environmental motivations to develop alternative energy resources, rese...
Switching to renewable, carbon-neutral sources of energy is urgent and critical for climate change m...
“The energy production has been depending mostly on fossil fuel which will be depleted someday in th...
We present a thorough assessment of the compositional dependent hydrogen evolution reaction (HER) ac...
Hydrogen is a promising carbon-free fuel / energy carrier and is an essential building block for man...
The energetic needs of a rising human population have led to the search for alternative energy sourc...
Hydrogen (H2) is the most promising green energy resources to replace conventional fossil fuels due ...
Molecular metal chalcogenides have attracted great attention as electrocatalysts for the hydrogen ev...
The production of hydrogen through water splitting using earth-abundant metal catalysts is a promisi...
The production of hydrogen through water splitting using earth-abundant metal catalysts is a promisi...
Sustainable terawatt-scale energy solutions for a constantly evolving energy landscape necessitate t...
Providing energy for a population projected to reach 9 billion people within the middle of this cent...
Transition metal dichalcogenides are cheap and earth-abundant candidates for the replacement of prec...
A theoretical framework has been formulated to gain mechanistic insight into molecular hydrogen evol...
The demand for energy is growing exponentially, and to keep up with these demands new technologies f...
In response to political and environmental motivations to develop alternative energy resources, rese...
Switching to renewable, carbon-neutral sources of energy is urgent and critical for climate change m...
“The energy production has been depending mostly on fossil fuel which will be depleted someday in th...
We present a thorough assessment of the compositional dependent hydrogen evolution reaction (HER) ac...
Hydrogen is a promising carbon-free fuel / energy carrier and is an essential building block for man...
The energetic needs of a rising human population have led to the search for alternative energy sourc...
Hydrogen (H2) is the most promising green energy resources to replace conventional fossil fuels due ...
Molecular metal chalcogenides have attracted great attention as electrocatalysts for the hydrogen ev...