In this study, energy and chemical interaction of ZnO and CdS surfaces interfaced with metal-organic framework (MOF), to improve their properties, have been investigated using density functional theory (DFT). Results show that reformation of structures by hybridation with MOF can increase their stability and improve their properties. Comparison of ZnO and CdS structures predict that deposition of MOF on ZnO substrate can be more effective
Design and synthesis of multi-dimensional metal-organic frameworks are fascinating because MOFs poss...
In this work, graphene-like ZnO (g-ZnO)-based two-dimensional (2D) heterostructures (ZnO/WS2 and ZnO...
Recently, semiconductor photocatalysts have received significant interest in addressing the global e...
In this thesis, I utilize first principles density functional theory (DFT) based calculations to inv...
One of the ways to address the increasing energy challenges of the world is through innovation at th...
The geometrical structure and photoexcitation properties of Zn27-nCdnO27C42 complexes are investigat...
The structural and electronic properties of a tetrathiafulvalene (TTF) monolayer adsorbed onto the Z...
Due to their networked structure, metal organic frameworks (MOFs) are commercially used to adsorb va...
In this work, we have used computer simulations to investigate the effect of organic functionalizati...
One of the most important advances in modern theoretical surface science and catalysis research has ...
International audienceGlobal warming is caused by excessive CO2 production, and reducing CO2 emissio...
The use of metal organic frameworks (MOFs) as heterogeneous photocatalysts is critically reviewed. F...
Hybrid systems of organic and inorganic semiconductors are a promising route for the development of ...
This article reviews the recent progress on predicting the adsorption properties of metal-organic fr...
Metal-organic frameworks (MOFs) containing d0 metals such as NH2-MIL-125(Ti), NH2-UiO-66(Zr) and NH2...
Design and synthesis of multi-dimensional metal-organic frameworks are fascinating because MOFs poss...
In this work, graphene-like ZnO (g-ZnO)-based two-dimensional (2D) heterostructures (ZnO/WS2 and ZnO...
Recently, semiconductor photocatalysts have received significant interest in addressing the global e...
In this thesis, I utilize first principles density functional theory (DFT) based calculations to inv...
One of the ways to address the increasing energy challenges of the world is through innovation at th...
The geometrical structure and photoexcitation properties of Zn27-nCdnO27C42 complexes are investigat...
The structural and electronic properties of a tetrathiafulvalene (TTF) monolayer adsorbed onto the Z...
Due to their networked structure, metal organic frameworks (MOFs) are commercially used to adsorb va...
In this work, we have used computer simulations to investigate the effect of organic functionalizati...
One of the most important advances in modern theoretical surface science and catalysis research has ...
International audienceGlobal warming is caused by excessive CO2 production, and reducing CO2 emissio...
The use of metal organic frameworks (MOFs) as heterogeneous photocatalysts is critically reviewed. F...
Hybrid systems of organic and inorganic semiconductors are a promising route for the development of ...
This article reviews the recent progress on predicting the adsorption properties of metal-organic fr...
Metal-organic frameworks (MOFs) containing d0 metals such as NH2-MIL-125(Ti), NH2-UiO-66(Zr) and NH2...
Design and synthesis of multi-dimensional metal-organic frameworks are fascinating because MOFs poss...
In this work, graphene-like ZnO (g-ZnO)-based two-dimensional (2D) heterostructures (ZnO/WS2 and ZnO...
Recently, semiconductor photocatalysts have received significant interest in addressing the global e...