A low-cost, platinum-free electrocatalyst for hydrogen (H2) generation via the water splitting reaction holds great promise to meet the demand of clean and sustainable energy sources. Recent studies are mainly concerned with semiconducting materials like sulfides, selenides, and phosphides of different transition metals as electrocatalysts. Doping of the transition metals within the host matrix is a good strategy to improve the electrocatalytic activity of the host material. However, this activity largely depends on the nature of the dopant metal and its host matrix as well. To exploit this idea, here, in the present work, we have synthesized semiconducting Ag2S nanoparticles and successfully doped them with different transition metals like...
The development of low-cost, efficient, and robust electrocatalysts of the hydrogen evolution reacti...
Heterogenous electrocatalysts based on transition metal sulfides (TMS) are being actively explored i...
Abstract Catalytically active metals atomically dispersed on supports presents the ultimate atom uti...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
Sustainable hydrogen generation via electrocatalytic/photocatalytic water splitting has been widely ...
Oxygen evolution catalysts made out of a metal (Ni, Co, or Fe) and a pnictide or chalcogenide (P, S,...
Recently, the replacement of expensive platinum-based catalytic materials with nonprecious metal mat...
Rational design of non-noble metal electrocatalysts with high intrinsic activity for both the oxygen...
Recently, the replacement of expensive platinum-based catalytic materials with nonprecious metal mat...
Different metal chalcogenides, being a potential candidate for hydrogen evolution catalysts, have at...
Rational design and synthesis of transition metal sulfide complex nanostructures are significant for...
Rational design and synthesis of transition metal sulfide complex nanostructures are significant for...
Photoelectrochemical water splitting has been considered as the most promising technology for genera...
Hydrogen, when generated directly from water with renewal energy input, is a promising energy carrie...
Hydrogen, when generated directly from water with renewal energy input, is a promising energy carrie...
The development of low-cost, efficient, and robust electrocatalysts of the hydrogen evolution reacti...
Heterogenous electrocatalysts based on transition metal sulfides (TMS) are being actively explored i...
Abstract Catalytically active metals atomically dispersed on supports presents the ultimate atom uti...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
Sustainable hydrogen generation via electrocatalytic/photocatalytic water splitting has been widely ...
Oxygen evolution catalysts made out of a metal (Ni, Co, or Fe) and a pnictide or chalcogenide (P, S,...
Recently, the replacement of expensive platinum-based catalytic materials with nonprecious metal mat...
Rational design of non-noble metal electrocatalysts with high intrinsic activity for both the oxygen...
Recently, the replacement of expensive platinum-based catalytic materials with nonprecious metal mat...
Different metal chalcogenides, being a potential candidate for hydrogen evolution catalysts, have at...
Rational design and synthesis of transition metal sulfide complex nanostructures are significant for...
Rational design and synthesis of transition metal sulfide complex nanostructures are significant for...
Photoelectrochemical water splitting has been considered as the most promising technology for genera...
Hydrogen, when generated directly from water with renewal energy input, is a promising energy carrie...
Hydrogen, when generated directly from water with renewal energy input, is a promising energy carrie...
The development of low-cost, efficient, and robust electrocatalysts of the hydrogen evolution reacti...
Heterogenous electrocatalysts based on transition metal sulfides (TMS) are being actively explored i...
Abstract Catalytically active metals atomically dispersed on supports presents the ultimate atom uti...