In this thesis, we have envisaged systematic investigation to predict the water splitting mechanism on ultra-thin two-dimensional (2D) materials using cutting edge computation. Three different families of materials are considered as the case studies - i.MX2 (where M= W and Pt) based transition metal dichalcogenides, ii. lightest 2D material as Boron monolayer and iii. Mg3N2 monolayer. The catalytic reaction mechanism of water dissociation consists of hydrogen evolution reaction (HER) and oxygen evolution reaction (OER), both of which are required to be investigated thoroughly in order to perceive the complete picture of water splitting. This is because of the fact that the fundamental understanding of how and why the improved solar hydrogen...
Developing highly conductive, stable, and active nonprecious hydrogen evolution reaction (HER) catal...
Developing highly conductive, stable, and active nonprecious hydrogen evolution reaction (HER) catal...
Developing highly conductive, stable, and active nonprecious hydrogen evolution reaction (HER) catal...
In this thesis, we have envisaged systematic investigation to predict the water splitting mechanism ...
Generating clean and sustainable hydrogen from water splitting processes represent a practical alter...
Electrocatalytic and photocatalytic water splittings for hydrogen production are sustainable technol...
Accelerated energy demands, together with unprecedented CO2 emissions, aggravate the global energy a...
Splitting of water with the help of photocatalysts has gained a strong interest in the scientific co...
Transition metal dichalcogenides (TMDCs) can be used as optical energy conversion materials to catal...
Accelerated energy demands, together with unprecedented CO2 emissions, aggravate the global energy a...
Ab initio computational modelling was used to examine nanoscale materials for renewable energy appli...
Ab initio computational modelling was used to examine nanoscale materials for renewable energy appli...
Developing highly conductive, stable, and active nonprecious hydrogen evolution reaction (HER) catal...
Developing highly conductive, stable, and active nonprecious hydrogen evolution reaction (HER) catal...
We explore the possibilities of hydrogen evolution by basal planes of 2D metal dichalcogenides and o...
Developing highly conductive, stable, and active nonprecious hydrogen evolution reaction (HER) catal...
Developing highly conductive, stable, and active nonprecious hydrogen evolution reaction (HER) catal...
Developing highly conductive, stable, and active nonprecious hydrogen evolution reaction (HER) catal...
In this thesis, we have envisaged systematic investigation to predict the water splitting mechanism ...
Generating clean and sustainable hydrogen from water splitting processes represent a practical alter...
Electrocatalytic and photocatalytic water splittings for hydrogen production are sustainable technol...
Accelerated energy demands, together with unprecedented CO2 emissions, aggravate the global energy a...
Splitting of water with the help of photocatalysts has gained a strong interest in the scientific co...
Transition metal dichalcogenides (TMDCs) can be used as optical energy conversion materials to catal...
Accelerated energy demands, together with unprecedented CO2 emissions, aggravate the global energy a...
Ab initio computational modelling was used to examine nanoscale materials for renewable energy appli...
Ab initio computational modelling was used to examine nanoscale materials for renewable energy appli...
Developing highly conductive, stable, and active nonprecious hydrogen evolution reaction (HER) catal...
Developing highly conductive, stable, and active nonprecious hydrogen evolution reaction (HER) catal...
We explore the possibilities of hydrogen evolution by basal planes of 2D metal dichalcogenides and o...
Developing highly conductive, stable, and active nonprecious hydrogen evolution reaction (HER) catal...
Developing highly conductive, stable, and active nonprecious hydrogen evolution reaction (HER) catal...
Developing highly conductive, stable, and active nonprecious hydrogen evolution reaction (HER) catal...