焦绿石
非键轨道
分子轨道
共价键
结晶学
八面体
化学物理
化学
分子
材料科学
晶体结构
相(物质)
有机化学
作者
Aleksandra Krajewska,A. N. Yaresko,Jürgen Nuß,Alexandra S. Gibbs,Sebastian Bette,Moritz Blankenhorn,Robert E. Dinnebier,Dita Puspita Sari,Isao Watanabe,J. Bertinshaw,H. Gretarsson,Kenji Ishii,Daiju Matsumura,Takaaki Tsuji,M. Isobe,B. Keimer,H. Takagi,T. Takayama
出处
期刊:Cornell University - arXiv
日期:2021-11-09
标识
DOI:10.48550/arxiv.2111.05057
摘要
The pyrochlore ruthenate In$_2$Ru$_2$O$_7$ displays a subtle competition between spin-orbital entanglement and molecular orbital formation. At room temperature, a spin-orbit-entangled singlet state was identified. With decreasing temperature, In$_2$Ru$_2$O$_7$ undergoes multiple structural transitions and eventually forms a nonmagnetic ground state with semi-isolated Ru$_2$O units on the pyrochlore lattice. The dominant hopping through the Ru-O-Ru linkage leads to molecular orbital formation within the Ru$_2$O units. This molecular orbital formation is unique in that it involves the O$^{2-}$ anions, unlike the transition-metal dimers observed in systems with edge-sharing octahedra. We argue that the covalent character of In-O bonds plays a pivotal role in the structural transitions and molecular orbital formation and such bonding character of "$A$-site" ions is an important ingredient for electronic phase competition in complex transition metal oxides.
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