Local structure displacements in La1-xCex OBiSSe as a function of Ce substitution
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info:eu-repo/semantics/closedAccessTarih
2020Yazar
Pugliese, Gian MarcoStramaglia, Federico
Capone, Federico G.
Hacısalihoğlu, Muammer Yasin
Kiyama, Ryosuke
Sogabe, Ryota
Goto, Yosuke
Pollastri, Simone
De Souza, Danilo Oliveira
Olivi, Luca
Mizokawa, Takashi
Mizuguchi, Yoshikazu
Saini, Naurang Lal
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Pugliese, G.M., Stramaglia, F., Capone, F.G., Hacısalihoğlu, M.Y., Kiyama, R. ...& Saini, N.l. (2020). Local structure displacements in La1-xCex OBiSSe as a function of Ce substitution. Journal of Physics and Chemistry of Solids, 147, 109648. https://doi.org/10.1016/j.jpcs.2020.109648Özet
We have investigated the local structure of layered La1-xCexOBiSSe system by Bi L-3 -edge extended X-ray absorption fine structure (EXAFS) measurements for different Ce substitutions. Ce L-3-edge X-ray absorption spectroscopy (XAS) has been used to evaluate the Ce valence responsible for the self-doping in this system. We have found that the local distortion, determined by the separation between two Bi-Ch distances within the BiCh(2)-layer (Ch=S,Se), is quickly suppressed by Ce substitution while the axial Bi-S2 bond elongates. Ce L-3-edge XAS reveals a coexistence of Ce3+ and Ce4+ in which the Ce4+ weight decreases, an indication of a partial breaking of RE-S-Bi (RE=La/Ce) charge transfer channel with Ce substitution. the results suggest that interaction between REO spacer layer and BiCh(2) layer, dictated by the out-of-plane Bi-S2 distance, has a significant role in triggering superconductivity in the title system, with the in-plane distortion controlling the charge mobility within the BiCh(2) -layer.