Electronic structures and optical properties of Silicon dioxide (SiO2) systems with and without cerium(Ce) dopant were calculated using the density functional theory. We find that after the Ce incorporation, a new localized impurity band appears between the valance band maximum (VBM) and the conduction band minimum (CBM) of SiO2 system, which is induced mainly by the Ce-4f orbitals. The localized impurity band constructs a bridge between the valence band and the conduction band, making the electronic transition much easier. The calculated optical properties show that in contrast from the pure SiO2 sample, absorption in the visible-light region is found in Ce-doped SiO2 system, which originates from the transition between the valence band an...
It was recently reported that Ce-doped Ca<sub>6</sub>BaP<sub>4</sub>O<sub>17</sub> displayed blue-gr...
Cerium oxide (CeO2) appears to be a promising candidate high-k dielectric material in GaAs-based met...
Quantum effects are very important in nano scale systems such as molecules and clusters constituted ...
Using first principle calculations, the effect of Ce with different doping concentrations in the net...
Équipe 104 : NanomatériauxInternational audienceThe optical properties of Ce-doped SiO2 thin films w...
International audienceWe calculated the electronic and optical properties of intrinsic point defects...
The magnetic properties and electronic structures of pure, doped and defective cerium oxide (CeO2) h...
This is an electronic version of an article published in Journal of Materials Chemistry. Ning, L., L...
The electronic and optical properties of the rare earth metal atom-doped anatase TiO2 have been inve...
Silicon dioxide is a material of particular technological interest for its exceptional combination o...
Recently, CeO2 as well as other Rare-Earth Oxides (REOs) have become known as water repelling materi...
Density functional theory (DFT) calculations of electronic energy bands of CexHf1-xO2 (x=0.5 and 0.7...
Experimental and computational (DFT) approaches were carried out to investigate oxygen vacancies on ...
Fluorite CeO2 doped with group IV elements is studied within the density functional theory (DFT) and...
The electronic structures of supercells of CeO2−δ have been calculated within the density functional...
It was recently reported that Ce-doped Ca<sub>6</sub>BaP<sub>4</sub>O<sub>17</sub> displayed blue-gr...
Cerium oxide (CeO2) appears to be a promising candidate high-k dielectric material in GaAs-based met...
Quantum effects are very important in nano scale systems such as molecules and clusters constituted ...
Using first principle calculations, the effect of Ce with different doping concentrations in the net...
Équipe 104 : NanomatériauxInternational audienceThe optical properties of Ce-doped SiO2 thin films w...
International audienceWe calculated the electronic and optical properties of intrinsic point defects...
The magnetic properties and electronic structures of pure, doped and defective cerium oxide (CeO2) h...
This is an electronic version of an article published in Journal of Materials Chemistry. Ning, L., L...
The electronic and optical properties of the rare earth metal atom-doped anatase TiO2 have been inve...
Silicon dioxide is a material of particular technological interest for its exceptional combination o...
Recently, CeO2 as well as other Rare-Earth Oxides (REOs) have become known as water repelling materi...
Density functional theory (DFT) calculations of electronic energy bands of CexHf1-xO2 (x=0.5 and 0.7...
Experimental and computational (DFT) approaches were carried out to investigate oxygen vacancies on ...
Fluorite CeO2 doped with group IV elements is studied within the density functional theory (DFT) and...
The electronic structures of supercells of CeO2−δ have been calculated within the density functional...
It was recently reported that Ce-doped Ca<sub>6</sub>BaP<sub>4</sub>O<sub>17</sub> displayed blue-gr...
Cerium oxide (CeO2) appears to be a promising candidate high-k dielectric material in GaAs-based met...
Quantum effects are very important in nano scale systems such as molecules and clusters constituted ...