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Electronic Lieb lattice signatures embedded in two-dimensional polymers with a square lattice

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Title
Electronic Lieb lattice signatures embedded in two-dimensional polymers with a square lattice
Author(s)
Yingying Zhang; Shuangjie Zhao; Miroslav Položij; Thomas Heine
Publication Date
2024-03
Journal
Chemical Science, v.15, pp.5757 - 5763
Publisher
Royal Society of Chemistry
Abstract
Exotic band features, such as Dirac cones and flat bands, arise directly from the lattice symmetry of materials. The Lieb lattice is one of the most intriguing topologies, because it possesses both Dirac cones and flat bands which intersect at the Fermi level. However, the synthesis of Lieb lattice materials remains a challenging task. Here, we explore two-dimensional polymers (2DPs) derived from zinc-phthalocyanine (ZnPc) building blocks with a square lattice (sql) as potential electronic Lieb lattice materials. By systematically varying the linker length (ZnPc-xP), we found that some ZnPc-xP exhibit a characteristic Lieb lattice band structure. Interestingly though, fes bands are also observed in ZnPc-xP. The coexistence of fes and Lieb in sql 2DPs challenges the conventional perception of the structure-electronic structure relationship. In addition, we show that manipulation of the Fermi level, achieved by electron removal or atom substitution, effectively preserves the unique characteristics of Lieb bands. The Lieb Dirac bands of ZnPc-4P shows a non-zero Chern number. Our discoveries provide a fresh perspective on 2DPs and redefine the search for Lieb lattice materials into a well-defined chemical synthesis task.
URI
https://pr.ibs.re.kr/handle/8788114/15140
DOI
10.1039/d3sc06367d
ISSN
2041-6520
Appears in Collections:
Center for Nanomedicine (나노의학 연구단) > 1. Journal Papers (저널논문)
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