TiS2 has been intensively studied as an electrode material and a thermoelectric material for energy storage and conversion applications due to its high electrical conductivity. Understanding the influence of defects on electrical transport is of importance not only to resolve the long-standing question concerning the nature of TiS2, but also for the rational design of TiS2 based devices for energy scavenging applications. In this study, we integrate photoemission spectroscopy, Raman spectroscopy, and electrical transport measurements to determine the chemical compositions dominated by defects and their influence on the doping and electrical properties. Our results demonstrate that TiS2 is a heavily self-doped semiconductor with the Fermi le...
Titanium dioxide (rutile) is the promising raw material for processing photocatalysts for solar wate...
The anatase phase of TiO2 is a key material in the third generation of photovoltaics and for photo-c...
We gratefully acknowledge support from The Leverhulme Trust (Grant No. RL-2016-006) and The Royal So...
TiS2 has been intensively studied as an electrode material and a thermoelectric material for energy ...
Using first-principles density functional theory calculations, we show a semimetal to semiconducting...
The structural and transport properties of polycrystalline Ti1−xPtxSe2−y(x≤0.13,y≤0.2) are studied, ...
The transition-metal dichalcogenide 1T-TiSe2 is a quasi-two-dimensional layered material with a char...
The transition-metal dichalcogenide 1T-TiSe2 is a quasi-two-dimensional layered material with a char...
The transition-metal dichalcogenide 1T−TiSe₂is a quasi-two-dimensional layered material with a charg...
Titanium dioxide, TiO2, has potential applications as a photoelectrode for photoelectrochemical gene...
The promising thermoelectric material TiS2 can be easily chemically doped and intercalated. We prese...
We present electrical resistivity (ρ) measurements for the intercalation compound Fex TiSe2 (0≤x<0.1...
(SnSe)(1.2)TiSe2 was found to self-assemble from a precursor containing modulated layers of Sn-Se an...
We studied the polarization dependence of the Ti K threshold in the layered compound TiS2. We found ...
The goal of this experimentation consists of the formation of TiSi2 and demonstration of its electri...
Titanium dioxide (rutile) is the promising raw material for processing photocatalysts for solar wate...
The anatase phase of TiO2 is a key material in the third generation of photovoltaics and for photo-c...
We gratefully acknowledge support from The Leverhulme Trust (Grant No. RL-2016-006) and The Royal So...
TiS2 has been intensively studied as an electrode material and a thermoelectric material for energy ...
Using first-principles density functional theory calculations, we show a semimetal to semiconducting...
The structural and transport properties of polycrystalline Ti1−xPtxSe2−y(x≤0.13,y≤0.2) are studied, ...
The transition-metal dichalcogenide 1T-TiSe2 is a quasi-two-dimensional layered material with a char...
The transition-metal dichalcogenide 1T-TiSe2 is a quasi-two-dimensional layered material with a char...
The transition-metal dichalcogenide 1T−TiSe₂is a quasi-two-dimensional layered material with a charg...
Titanium dioxide, TiO2, has potential applications as a photoelectrode for photoelectrochemical gene...
The promising thermoelectric material TiS2 can be easily chemically doped and intercalated. We prese...
We present electrical resistivity (ρ) measurements for the intercalation compound Fex TiSe2 (0≤x<0.1...
(SnSe)(1.2)TiSe2 was found to self-assemble from a precursor containing modulated layers of Sn-Se an...
We studied the polarization dependence of the Ti K threshold in the layered compound TiS2. We found ...
The goal of this experimentation consists of the formation of TiSi2 and demonstration of its electri...
Titanium dioxide (rutile) is the promising raw material for processing photocatalysts for solar wate...
The anatase phase of TiO2 is a key material in the third generation of photovoltaics and for photo-c...
We gratefully acknowledge support from The Leverhulme Trust (Grant No. RL-2016-006) and The Royal So...