The emergence of two-dimensional (2D) materials with a large lateral size and extremely small thickness has significantly changed the development of many research areas by producing a variety of unusual physicochemical properties. Semiconductor photocatalysis is intrinsically controlled by multiple light-matter, light absorber-cocatalyst and molecular/ionic-matter interactions that can be highly dependent on the geometric features of the light absorber. In this review, we focus on the unique structures and unusual physicochemical properties of 2D semiconducting light absorbers and their roles in facilitating photocatalysis. In particular, we highlight their structure-property relationships considering the unique electronic structure, optica...
Two-dimensional (2D) materials have unique band structure and show a great promise for optoelectroni...
Photocatalysis is a green technology which converts abundantly available photonic energy into useful...
Two-dimensional (2D) materials have unique band structure and show a great promise for optoelectroni...
Ultrathin two-dimensional (2D) semiconductor-mediated photocatalysts have shown their compelling pot...
Splitting of water with the help of photocatalysts has gained a strong interest in the scientific co...
As a sustainable technology, semiconductor photocatalysis has attracted considerable interest in the...
Hydrogen (H-2) production via solar water splitting is one of the most ideal strategies for providin...
Abstract Two-dimensional (2D) transition metal oxide and chalcogenide (TMO&C)-based photocatalysts h...
The overwhelming challenge of depleting fossil fuels and anthropogenic carbon emissions has driven r...
Increasing demand for energy and environmental degradation are the most serious problems facing the ...
ConspectusPhotocatalysis technology has gained extensive attention in the past few decades due to it...
Increasing demand for energy and environmental degradation are the most serious problems facing the ...
Solar-driven chemical processes are promising alternatives to conventional chemical production, espe...
Electron confinement due to the two-dimensional (2D) nature of layered materials accounts for their ...
Abstract: Hydrogen production through photocatalytic water splitting is being developed swiftly to a...
Two-dimensional (2D) materials have unique band structure and show a great promise for optoelectroni...
Photocatalysis is a green technology which converts abundantly available photonic energy into useful...
Two-dimensional (2D) materials have unique band structure and show a great promise for optoelectroni...
Ultrathin two-dimensional (2D) semiconductor-mediated photocatalysts have shown their compelling pot...
Splitting of water with the help of photocatalysts has gained a strong interest in the scientific co...
As a sustainable technology, semiconductor photocatalysis has attracted considerable interest in the...
Hydrogen (H-2) production via solar water splitting is one of the most ideal strategies for providin...
Abstract Two-dimensional (2D) transition metal oxide and chalcogenide (TMO&C)-based photocatalysts h...
The overwhelming challenge of depleting fossil fuels and anthropogenic carbon emissions has driven r...
Increasing demand for energy and environmental degradation are the most serious problems facing the ...
ConspectusPhotocatalysis technology has gained extensive attention in the past few decades due to it...
Increasing demand for energy and environmental degradation are the most serious problems facing the ...
Solar-driven chemical processes are promising alternatives to conventional chemical production, espe...
Electron confinement due to the two-dimensional (2D) nature of layered materials accounts for their ...
Abstract: Hydrogen production through photocatalytic water splitting is being developed swiftly to a...
Two-dimensional (2D) materials have unique band structure and show a great promise for optoelectroni...
Photocatalysis is a green technology which converts abundantly available photonic energy into useful...
Two-dimensional (2D) materials have unique band structure and show a great promise for optoelectroni...