We present a successful synthesis method of the series GaxCu4−x(OD)6Cl2 with substitutions up to x=0.8. The compound remains a frustrated kagome system with an insulating ground state similar to herbertsmithite for these substitutions, as the additional charge of Ga3+ is most likely bound to additional OH− and Cl−. Besides infrared measurements, we present magnetic and specific-heat data down to 2 K for selected samples with 0≤x≤0.8. With increasing x the long-range magnetic order is suppressed, similar to what was observed in the series ZnxCu4−x(OH)6Cl2, indicating that Ga goes predominantly to the inter-plane position of the layered crystal structure. The reduction of the frozen magnetic fraction with increasing substitution was followed by μSR measurements. 69,71Ga nuclear magnetic resonance (NMR) was applied as a local probe for Ga induced disorder. One well resolved Ga NMR line of moderate width is found for each isotope across the phase diagram which indicates a rather homogeneous distribution of the Ga isotopes on a single site in the lattice.
@article{arxiv.1811.02462,
title = {Ga$_{x}$Cu$_{4-x}$(OD)$_{6}$Cl$_{2}$: Insulating ground state in an electron doped kagome system},
author = {P. Puphal and K. M. Ranjith and A. Pustogow and M. Muller and A. Rogalev and K. Kummer and J. -C. Orain and C. Baines and M. Baenitz and M. Dressel and E. Kermarrec and F. Bert and P. Mendels and C. Krellner},
journal= {arXiv preprint arXiv:1811.02462},
year = {2018}
}