Chemo-Structural Disorder in the kagom\'e spin $S$ = 1/2 systems ZnCu$_3$(OH)$_6$Cl$_2$ and YCu$_3$(OH)$_{6}$Br$_{2}$[Br$_x$(OH)$_{1-x}$]
Reinhard K. Kremer, Sebastian Bette, J\"urgen Nuss, Pascal Puphal

TL;DR
This study uses single crystal diffraction to analyze chemo-structural disorder caused by Zn-Cu site mixing in kagomé spin-1/2 systems, revealing substitution patterns and structural transitions that influence magnetic properties.
Contribution
It provides detailed characterization of site mixing and structural disorder in herbertsmithite and related compounds, linking structural features to magnetic behavior.
Findings
Zn-Cu site mixing occurs in herbertsmithite and YCu3(OH)6Br2[x]
Structural transition driven by magneto-phonon coupling at low temperatures
Physical properties remain similar despite structural disorder
Abstract
By single crystal diffraction we characterize the chemo-structural disorder introduced by Zn-Cu site mixing in the kagom\'e spin -1/2 systems herbertsmithite ZnCu(OH)Cl and YCu(OH)Br[Br(OH)]. For an untwinned single crystal of herbertsmithite of composition ZnCuOHCl we find substitution by Cu of the Zn atoms in the layers separating the kagom\'e layers as well as substantial Zn substitution for Cu in the kagom\'e layers. In YCu(OH)Br[Br(OH)] site mixing disorder is present for intermediate . Analogous to the Cl homologous system in crystals with disorder is absent and a low-temperature structural transition emerges driven by strong magneto-phonon coupling as a release of frustration. Apart from this structural anomaly we find the physical properties of…
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Taxonomy
TopicsAdvanced Condensed Matter Physics · Plant and Fungal Species Descriptions
