Chemical tuning between triangular and honeycomb structures in a 5d spin-orbit Mott insulator

the deposited package contains resistivity and x-ray diffraction data on the layered potassium-iridate materials KxIryO2 We report structural studies of the spin-orbit Mott insulator family KxIryO2, with triangular layers of edge-sharing IrO6 octahedra bonded by potassium ions. The potassium content...

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Main Authors: Johnson, R, Broeders, I, Coldea, R
其他作者: Mehlawat, K
格式: Dataset
出版: University of Oxford 2019
_version_ 1826268761579061248
author Johnson, R
Broeders, I
Coldea, R
author2 Mehlawat, K
author_facet Mehlawat, K
Johnson, R
Broeders, I
Coldea, R
author_sort Johnson, R
collection OXFORD
description the deposited package contains resistivity and x-ray diffraction data on the layered potassium-iridate materials KxIryO2 We report structural studies of the spin-orbit Mott insulator family KxIryO2, with triangular layers of edge-sharing IrO6 octahedra bonded by potassium ions. The potassium content acts as a chemical tuning parameter to control the amount of charge in the Ir-O layers. Unlike the isostructural families with Ir replaced by Co or Rh (y=1), which are metallic over a range of potassium compositions x, we instead find insulating behaviour with charge neutrality achieved via iridium vacancies, which order in a honeycomb supercell above a critical composition. By performing density functional theory calculations we attribute the observed behaviour to a subtle interplay of crystal-field environment, local electronic correlations and strong spin-orbit interaction at the Ir4+ sites, making this structural family a candidate to display Kitaev magnetism in the experimentally unexplored regime that interpolates between triangular and honeycomb structures.
first_indexed 2024-03-06T21:14:33Z
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spelling oxford-uuid:3f52bf7f-6b2f-4cf1-a3c0-dc9d84a19d8a2022-03-26T14:31:19ZChemical tuning between triangular and honeycomb structures in a 5d spin-orbit Mott insulatorDatasethttp://purl.org/coar/resource_type/c_ddb1uuid:3f52bf7f-6b2f-4cf1-a3c0-dc9d84a19d8aORA DepositUniversity of Oxford2019Johnson, RBroeders, IColdea, RMehlawat, KColdea, RLi, YSingh, YValenti, Rthe deposited package contains resistivity and x-ray diffraction data on the layered potassium-iridate materials KxIryO2 We report structural studies of the spin-orbit Mott insulator family KxIryO2, with triangular layers of edge-sharing IrO6 octahedra bonded by potassium ions. The potassium content acts as a chemical tuning parameter to control the amount of charge in the Ir-O layers. Unlike the isostructural families with Ir replaced by Co or Rh (y=1), which are metallic over a range of potassium compositions x, we instead find insulating behaviour with charge neutrality achieved via iridium vacancies, which order in a honeycomb supercell above a critical composition. By performing density functional theory calculations we attribute the observed behaviour to a subtle interplay of crystal-field environment, local electronic correlations and strong spin-orbit interaction at the Ir4+ sites, making this structural family a candidate to display Kitaev magnetism in the experimentally unexplored regime that interpolates between triangular and honeycomb structures.
spellingShingle Johnson, R
Broeders, I
Coldea, R
Chemical tuning between triangular and honeycomb structures in a 5d spin-orbit Mott insulator
title Chemical tuning between triangular and honeycomb structures in a 5d spin-orbit Mott insulator
title_full Chemical tuning between triangular and honeycomb structures in a 5d spin-orbit Mott insulator
title_fullStr Chemical tuning between triangular and honeycomb structures in a 5d spin-orbit Mott insulator
title_full_unstemmed Chemical tuning between triangular and honeycomb structures in a 5d spin-orbit Mott insulator
title_short Chemical tuning between triangular and honeycomb structures in a 5d spin-orbit Mott insulator
title_sort chemical tuning between triangular and honeycomb structures in a 5d spin orbit mott insulator
work_keys_str_mv AT johnsonr chemicaltuningbetweentriangularandhoneycombstructuresina5dspinorbitmottinsulator
AT broedersi chemicaltuningbetweentriangularandhoneycombstructuresina5dspinorbitmottinsulator
AT coldear chemicaltuningbetweentriangularandhoneycombstructuresina5dspinorbitmottinsulator