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AgRuO 3 , a Strongly Exchange‐Coupled Honeycomb Compound Lacking Long‐Range Magnetic Order
Author(s) -
Prasad Beluvalli E.,
Kanungo Sudipta,
Jansen Martin,
Komarek Alexander C.,
Yan Binghai,
Manuel Pascal,
Felser Claudia
Publication year - 2017
Publication title -
chemistry – a european journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.687
H-Index - 242
eISSN - 1521-3765
pISSN - 0947-6539
DOI - 10.1002/chem.201606057
Subject(s) - stacking , honeycomb , magnetization , condensed matter physics , octahedron , materials science , crystallography , oxide , coupling (piping) , chemical physics , chemistry , nuclear magnetic resonance , magnetic field , physics , crystal structure , composite material , metallurgy , quantum mechanics
Quasi two‐dimensional (2D) oxide‐based honeycomb lattices have attracted great attention for displaying specific electronic instabilities, which give rise to unconventional bonding patterns and unexpected magnetic exchange couplings. The synthesis of AgRuO 3 , another representative exhibiting unique structural properties, is reported here. The stacking sequence of the honeycomb layers (Ru 2 O 6 ) differs from analogous precedents; in particular, the intercalating silver atoms are shifted from the middle of the interspaces and cap the void octahedral sites of the (□Ru 2 O 6 ) slabs from both sides. This way, charge neutral, giant 2D “molecules” of Ag/Ru 2 O 6 /Ag result; a feature that significantly enhances the overall 2D character of AgRuO 3 . Measurements of magnetization have revealed extremely strong magnetic exchange coupling to be present, surviving to a temperature as high as 673 K, which is the temperature of thermal decomposition. No indication for long‐range magnetic order has, however, been observed. Theoretical analyses confirm the pronounced 2D character of the electronic system, and in particular reveal the inter‐honeycomb layer coupling J c to be distinctly weak.
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