Resonant levels, vacancies and doping in Bi2Te3, Bi2Te2Se and Bi2Se3 tetradymites
arXiv:1603.07260 · doi:10.1007/s11664-016-4502-9
Abstract
Electronic structures of the tetradymites, BiTe, BiTeSe and BiSe, containing various dopants and vacancies, are studied using the first principles calculations methods. We focus on the possibility of formation of the resonant levels (RL), confirming the formation of the RL by Sn in BiTe, and predicting similar behavior of Sn in BiTeSe and BiSe. Vacancies, which are likely present on the chalcogen atoms in the real samples of BiTeSe and BiSe, are also studied and their charged donor and resonant behavior is discussed. Doping of the vacancy-containing materials with regular acceptors, like Ca or Mg, is shown to compensate the donor effect of vacancies, and crossover, while increasing the dopant concentration, is observed. We verify, that RL on Sn is not disturbed by the chalcogen vacancies in BiTeSe and BiSe, and for the Sn-doped materials with Se or Te vacancies, double-doping, instead of heavy doping with Sn, is suggested as an effective way of reaching the resonant level. This should help to avoid the smearing of the RL, which was a possible reason for an earlier unsuccessful experimental observation of the influence of the RL on thermoelectric properties of Sn doped BiTeSe. Finally we show, that Al and Ga are possible new resonant impurities in the tetradymites, hoping that it will stimulate further experimental studies.
15 pages, 18 figures, to be published in Journal of Electronic Materials
References in corpus (6)
- First Principles Studies on 3-Dimentional Strong Topological Insulators: Bi2Te3, Bi2Se3 and Sb2Te3
- Controlling bulk conductivity in topological insulators: Key role of anti-site defects
- Fermi surface and electron dispersions of PbTe doped with resonant Tl impurity from KKR-CPA calculations
- P-type doping of elemental bismuth with indium, gallium and tin: a novel doping mechanism in solids
- Comparison of Sn-doped and nonstoichiometric vertical-Bridgman-grown crystals of the topological insulator Bi2Te2Se
- Localization and magnetism of the resonant impurity states in Ti doped PbTe
Cited by in corpus (4)
- Sn-doped Bi1.1Sb0.9Te2S, a bulk topological insulator with ideal properties
- Electronic properties of BiSe dopped by transition metal (Mn, Fe, Co, or Ni) ions
- Effect of gallium doping on structural and transport properties of the topological insulator Bi2Se3 grown by molecular beam epitaxy
- Magnetotransport in graphene/Pb0.24Sn0.76Te heterostructures: finding a way to avoid catastrophe