Heterogenous electrocatalysts based on transition metal sulfides (TMS) are being actively explored in renewable energy research because nanostructured forms support high intrinsic activities for both the hydrogen evolution reaction (HER) and oxygen evolution reaction (OER). Herein, it is described how researchers are working to improve the performance of TMS-based materials by manipulating their internal and external nanoarchitectures. A general introduction to the water-splitting reaction is initially provided to explain the most important parameters in accessing the catalytic performance of nanomaterials catalysts. Later, the general synthetic methods used to prepare TMS-based materials are explained in order to delve into the various str...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
The rising demand for fossil fuels and the resulting pollution have raised environmental concerns ab...
The development of earth-abundant electrocatalysts (ECs) operating at high current densities in wate...
The research on renewable energy is actively looking into electrocatalysts based on transition metal...
The research on renewable energy is actively looking into electrocatalysts based on transition metal...
Utilizing earth-abundant metals to design economical and efficient electrocatalysts for cathodic hyd...
The demand for energy so far has only been at an increasing rate, and this can be accounted for due ...
The demand for energy so far has only been at an increasing rate, and this can be accounted for due ...
Hydrogen related energy is expected to play a major role in the development of sustainable energy an...
Efficient and low-cost transition-metal (TM)-based electrocatalysts have been of great importance fo...
Efficient and low-cost transition-metal (TM)-based electrocatalysts have been of great importance fo...
Abstract Hydrogen has received significant attention as a promising future energy carrier due to its...
Low efficiency, short lifetimes, and limited kinds of catalysts are still three fundamental shortcom...
Widely used precious metal (i.e., Pt, or Pd) electrocatalysts need to be replaced with other cost-ef...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
The rising demand for fossil fuels and the resulting pollution have raised environmental concerns ab...
The development of earth-abundant electrocatalysts (ECs) operating at high current densities in wate...
The research on renewable energy is actively looking into electrocatalysts based on transition metal...
The research on renewable energy is actively looking into electrocatalysts based on transition metal...
Utilizing earth-abundant metals to design economical and efficient electrocatalysts for cathodic hyd...
The demand for energy so far has only been at an increasing rate, and this can be accounted for due ...
The demand for energy so far has only been at an increasing rate, and this can be accounted for due ...
Hydrogen related energy is expected to play a major role in the development of sustainable energy an...
Efficient and low-cost transition-metal (TM)-based electrocatalysts have been of great importance fo...
Efficient and low-cost transition-metal (TM)-based electrocatalysts have been of great importance fo...
Abstract Hydrogen has received significant attention as a promising future energy carrier due to its...
Low efficiency, short lifetimes, and limited kinds of catalysts are still three fundamental shortcom...
Widely used precious metal (i.e., Pt, or Pd) electrocatalysts need to be replaced with other cost-ef...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
The rising demand for fossil fuels and the resulting pollution have raised environmental concerns ab...
The development of earth-abundant electrocatalysts (ECs) operating at high current densities in wate...