4.6 Article

π-Orbital Yin-Yang Kagome bands in anilato-based metal-organic frameworks

Journal

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume 22, Issue 44, Pages 25827-25832

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/d0cp03941a

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Funding

  1. U.S. Department of Energy-Basic Energy Sciences [DE-FG02-04ER46148]

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pi-Orbital bonding plays an important role not only in traditional molecular science and solid-state chemistry but also in modern quantum physics and materials, such as the relativistic Dirac states formed by bonding and antibonding pi-bands in graphene. Here, we disclose an interesting manifestation of pi-orbitals in forming the Yin-Yang Kagome bands, which host potentially a range of exotic quantum phenomena. Based on first-principles calculations and tight-binding orbital analyses, we show that the frontier pi(2)- and pi(3)-orbitals in anilato-based metal-organic frameworks form concurrently a conduction and valence set of Kagome bands, respectively, but with opposite signs of lattice hopping to constitute a pair of enantiomorphic Yin and Yang Kagome bands, as recently proposed in a diatomic Kagome lattice. The twisted configuration of neighboring benzene-derived organic ligands bridged by an octahedrally O-coordinated metal ion is found to play a critical role in creating the opposite sign of lattice hopping for the pi(2)- versus pi(3)-orbitals. Our finding affords a new material platform to study pi-orbital originated quantum chemistry and physics.

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