Zq. Tan et al., NATURE OF HOLE DOPING IN ND2NIO4 AND LA2NIO4 - COMPARISON WITH LA2CUO4, Physical review. B, Condensed matter, 47(18), 1993, pp. 12365-12368
To elucidate the hole doping mechanism, we have systematically studied
the Ni and Cu K-edge x-ray-absorption spectra in doped Nd2NiO4, La2Ni
O4, and La2CuO4. We find a significant difference in the character of
the doped hole between the nickelates and cuprate. We observe that bot
h strontium substitution and introduction of excess oxygen lead to a s
hift of the Ni absorption edge to higher energies, by nearly 3 eV in N
aSrNiO4. This result demonstrates that the doped holes, in addition to
the O 2p character, have a substantial amount of Ni 3d character (30-
40 %). The intensity of the 1s-3d transition increases upon doping, co
nsistent with increasing number of d holes. In contrast, the Cu absorp
tion edge in the doped cuprate is shifted by much smaller amounts, ind
icative of a lower amount of Cu 3d character for the doped hole. The s
trongly mixed Ni 3d and O 2p character of the doped hole distinguishes
the electronic structure of the nickelate from that of the cuprate.