The interface formation and its effect on redox processes in agglomerated ceria nanoparticles (NPs) have been investigated using a multiscale simulation approach with standard density functional theory (DFT), the self-consistent-charge density functional tight binding (SCC-DFTB) method, and a DFT-parameterized reactive force-field (ReaxFF). In particular, we have modeled Ce40O80 NP pairs, using SCC-DFTB and DFT, and longer chains and networks formed by Ce40O80 or Ce132O264 NPs, using ReaxFF molecular dynamics simulations. We find that the most stable {111}/{111} interface structure is coherent whereas the stable {100}/{100} structures can be either coherent or incoherent. The formation of {111}/{111} interfaces is found to have only a very ...
Ceria has become a very important material for catalytic applications. Many applications take advant...
In this study, we investigate the (111), (110) and (100) surfaces of reduced ceria (CeO2) using dens...
Cerium dioxide (ceria) is an excellent catalytic material due to its ability to both facilitate oxid...
The interface formation and its effect on redox processes in agglomerated ceria nanoparticles (NPs) ...
The interface formation and its effect on redox processes in agglomerated ceria nanoparticles (NPs) ...
Nanomaterials, with potential application as bio-medicinal agents, exploit the chemical properties o...
Nanomaterials, with potential application as bio-medicinal agents, exploit the chemical properties o...
First principles modelling, using e.g. the density functional theory (DFT), has become a valuable to...
Compact CeO2(111) films grown on Ru(0001) can be transformed into well-shaped nanoparticles by annea...
Catalytic mechanisms, and therefore activity, depend on the structure of catalyst surfaces. In turn,...
Cerium dioxide (CeO2, ceria) nanoparticles possess size-dependent chemical properties, which may be ...
Materials based on ceria (Ce02) are used in many catalytic applications [2-5]. These applications ma...
The versatile redox chemistry of ceria (CeO2) originates from its Ce4f electron, which plays the key...
Performance of catalytic redox reactions depends crucially on the oxygen storage and release capabil...
Ceria nanoparticles (NPs) are fundamental in heterogeneous catalysis because of their ability to sto...
Ceria has become a very important material for catalytic applications. Many applications take advant...
In this study, we investigate the (111), (110) and (100) surfaces of reduced ceria (CeO2) using dens...
Cerium dioxide (ceria) is an excellent catalytic material due to its ability to both facilitate oxid...
The interface formation and its effect on redox processes in agglomerated ceria nanoparticles (NPs) ...
The interface formation and its effect on redox processes in agglomerated ceria nanoparticles (NPs) ...
Nanomaterials, with potential application as bio-medicinal agents, exploit the chemical properties o...
Nanomaterials, with potential application as bio-medicinal agents, exploit the chemical properties o...
First principles modelling, using e.g. the density functional theory (DFT), has become a valuable to...
Compact CeO2(111) films grown on Ru(0001) can be transformed into well-shaped nanoparticles by annea...
Catalytic mechanisms, and therefore activity, depend on the structure of catalyst surfaces. In turn,...
Cerium dioxide (CeO2, ceria) nanoparticles possess size-dependent chemical properties, which may be ...
Materials based on ceria (Ce02) are used in many catalytic applications [2-5]. These applications ma...
The versatile redox chemistry of ceria (CeO2) originates from its Ce4f electron, which plays the key...
Performance of catalytic redox reactions depends crucially on the oxygen storage and release capabil...
Ceria nanoparticles (NPs) are fundamental in heterogeneous catalysis because of their ability to sto...
Ceria has become a very important material for catalytic applications. Many applications take advant...
In this study, we investigate the (111), (110) and (100) surfaces of reduced ceria (CeO2) using dens...
Cerium dioxide (ceria) is an excellent catalytic material due to its ability to both facilitate oxid...