Extensive calculations using density functional theory enable us to explain the origin of the surprising room-temperature conversion of anatase to rutile phase of TiO2 when doped with Co and Ni, but not with Cu. Contrary to earlier suggestion, neither high spin nor strain of the transition metals is found to be responsible for this phase conversion. The driving mechanism, instead, is attributed to the increased interaction between Co and Ni atoms forming a linear chain in the rutile phase. We predict that Cr and Mn which have even larger spins than Co and Ni cannot induce this phase conversion
A combination of scanning tunneling microscopy and spectroscopy and density functional theory is use...
Using the effective field theory (EFT), the Curie temperature of V- doped rutile TiO2 has been deter...
Anatase to rutile transition in an unmodified synthetic titania usually occurs at a temperature rang...
Titanium dioxide exists in three different crystalline forms: anatase, rutile, and brookite. It is ...
This paper shows that incorporation of Cu inhibits the anatase to rutile phase transition at tempera...
This paper shows that incorporation of Cu inhibits the anatase to rutile phase transition at tempera...
The local environment around magnetic impurity atoms was reported to be unchanged in a structural ph...
We have employed a combination of experimental surface science techniques and density functional cal...
Among the three major phases in titania, anatase is reported to be a better photocatalytically activ...
International audienceCombining the local spin density approximation (LSDA)+U and an analysis of sup...
International audienceTitanium dioxide, TiO 2 , is an important pho-tocatalytic material that exists...
We present an ab initio study of pure and doped TiO₂ in the rutile and anatase phases. The main purp...
The incorporation of TcO2 into the rutile phase of TiO2 has been theoretically examined to understan...
We observe that the electronic and magnetic properties of Cr-doped rutile TiO2 single crystals are h...
Density functional theory (DFT) calculations were performed to address the effects of 5d transition ...
A combination of scanning tunneling microscopy and spectroscopy and density functional theory is use...
Using the effective field theory (EFT), the Curie temperature of V- doped rutile TiO2 has been deter...
Anatase to rutile transition in an unmodified synthetic titania usually occurs at a temperature rang...
Titanium dioxide exists in three different crystalline forms: anatase, rutile, and brookite. It is ...
This paper shows that incorporation of Cu inhibits the anatase to rutile phase transition at tempera...
This paper shows that incorporation of Cu inhibits the anatase to rutile phase transition at tempera...
The local environment around magnetic impurity atoms was reported to be unchanged in a structural ph...
We have employed a combination of experimental surface science techniques and density functional cal...
Among the three major phases in titania, anatase is reported to be a better photocatalytically activ...
International audienceCombining the local spin density approximation (LSDA)+U and an analysis of sup...
International audienceTitanium dioxide, TiO 2 , is an important pho-tocatalytic material that exists...
We present an ab initio study of pure and doped TiO₂ in the rutile and anatase phases. The main purp...
The incorporation of TcO2 into the rutile phase of TiO2 has been theoretically examined to understan...
We observe that the electronic and magnetic properties of Cr-doped rutile TiO2 single crystals are h...
Density functional theory (DFT) calculations were performed to address the effects of 5d transition ...
A combination of scanning tunneling microscopy and spectroscopy and density functional theory is use...
Using the effective field theory (EFT), the Curie temperature of V- doped rutile TiO2 has been deter...
Anatase to rutile transition in an unmodified synthetic titania usually occurs at a temperature rang...