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Zhurnal Tekhnicheskoi Fiziki, 2021 Volume 91, Issue 7, Pages 1132–1138 (Mi jtf4974)

Physical science of materials

Local structure of copper centers obtained during solid-phase synthesis in copper–mordenite zeolite

V. V. Pryadchenko, G. B. Sukharina, A. M. Ermakova, S. V. Bazovaya, T. I. Kurzina, V. A. Durymanov, V. A. Tolstopyatenko, V. V. Srabionyan, L. A. Avakyan, L. A. Bugaev

Southern Federal University, Rostov-on-Don

Abstract: The influence of temperature conditions for synthesis on the nearest-neighbor environment of copper atoms in copper–mordenite zeolites produced by solid-phase ion exchange has been investigated. The models of the local atomic structure of active copper centers in copper–mordenite zeolite at 300 and 400$^\circ$C have been established using two complementary techniques: X-ray absorption spectroscopy and density functional theory. It has been found that, at 300$^\circ$C, the copper atom does not have another one in its nearest-neighbor environment (monocentric model), whereas at 400$^\circ$C the center contains at least two copper atoms, which form Cu–O–Cu bridges. The structural parameters of Cu–O bonds have been determined.

Keywords: zeolites, XAS, density functional theory.

Received: 25.01.2021
Revised: 06.02.2021
Accepted: 07.02.2021

DOI: 10.21883/JTF.2021.07.50954.166-20


 English version:
Technical Physics, 2021, 66:9, 1018–1024

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© Steklov Math. Inst. of RAS, 2025