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Electronic Structures of the Vanadium-Intercalated and Substitutionally Doped Transition-Metal Dichalcogenides TixVySe2.

Alexey S ShkvarinYury M YarmoshenkoAlexander I MerentsovElena G ShkvarinaAndrei F GubkinIgor PíšSilvia NappiniFederica BondinoIvan A BobrikovAlexsandr N Titov
Published in: Inorganic chemistry (2020)
The electronic structures of V-intercalated TiSe2 and substitutionally doped dichalcogenides Ti1-xVxSe2 have been studied using soft X-ray photoelectron, resonant photoelectron, and absorption spectroscopies. In the case of the substitution of Ti by V, the formation of coherently oriented structural fragments VSe2 and TiSe2 is observed and a small charge transfer between these fragments is found. Intercalation of the V atoms into TiSe2 leads to charge transfer from the V atoms to the Ti atoms with the formation of covalent complexes Ti-Se3-V-Se3-Ti.
Keyphrases
  • high resolution
  • quantum dots
  • transition metal
  • mass spectrometry
  • dual energy
  • solid state