Chemical engineering of quasicrystal approximants in lanthanide-based coordination solids.

Abstract:

:Tessellation of self-assembling molecular building blocks is a promising strategy to design metal-organic materials exhibiting geometrical frustration and ensuing frustrated physical properties. Appearing in two-dimensional quasiperiodic phases, tilings consisting of five-vertex nodes are regarded as approximants for quasicrystals. Unfortunately, these structural motifs are exceedingly rare due to the complications of acquiring five-fold coordination confined to the plane. Lanthanide ions display the sufficient coordinative plasticity, and large ionic radii, to allow their incorporation into irregular molecule-based arrays. We herein present the use of ytterbium(II) as a five-vertex node in a two-dimensional coordination solid, YbI2(4,4'-bipyridine)2.5. The semi-regular Archimedean tessellation structure verges on quasicrystallinity and paves the way for lanthanide-based metal-organic materials with interesting photonic and magnetic properties.

journal_name

Nat Commun

journal_title

Nature communications

authors

Voigt L,Kubus M,Pedersen KS

doi

10.1038/s41467-020-18328-5

subject

Has Abstract

pub_date

2020-09-17 00:00:00

pages

4705

issue

1

issn

2041-1723

pii

10.1038/s41467-020-18328-5

journal_volume

11

pub_type

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