Different doping from apical and planar oxygen vacancies in Ba2CuO4−δ and La2CuO4−δ: First-principles band structure calculations
نویسندگان
چکیده
First-principles band structure calculations for large supercells of Ba2CuO4−δ and La2CuO4−δ with different distributions and concentrations of oxygen vacancies show that the effective doping on copper sites strongly depends on where the vacancy is located. A vacancy within the Cu layer produces a weak doping effect while a vacancy located at an apical oxygen site acts as a stronger electron dopant on the copper layers and gradually brings the electronic structure close to that of La2−xSrxCuO4. These effects are robust and only depend marginally on lattice distortions. Our results show that deoxygenation can reduce the effect of traditional La/Sr or La/Nd substitutions. Our study clearly identifies location of the dopant in the crystal structure as an important factor in doping of the cuprate planes.
منابع مشابه
Effects of Excess or Deficiency of Oxygen Content on the Electronic Structure of High-Tc Cuprates
Band structure calculations are presented for large supercells of Ba2CuO4 (BCO) with O-vacancies in planar or apical positions, and of superoxygenated La2CuO4 (LCO) with oxygen interstitials in the La2O2 layers. It is found that apical oxygen vacancies in BCO act as electron dopants and makes the electronic structure similar to that of hole doped LCO. Excess oxygen interstitials forming wires i...
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