Ates, TankutKeser, SerhatBulut, NiyaziKaygili, Omer2026-06-192026-06-1920252037-46311720-0776https://doi.org/10.1007/s12210-025-01340-6https://hdl.handle.net/20.500.12899/6017This study presents a comprehensive investigation of the effects of chromium (Cr) on the structural properties of zinc oxide (ZnO). X-ray diffraction (XRD) analysis confirmed the formation of the ZnO wurtzite phase for all samples. At lower Cr concentrations (up to 1.4 at%), Cr3(+) ions were successfully incorporated into the ZnO lattice without forming secondary phases, indicating effective substitutional doping. However, at higher Cr contents (>= 2.8 at%), the formation of a secondary ZnCr2O4 spinel phase was observed, suggesting that the Cr solubility limit in ZnO was exceeded. Cr content influenced various crystal-structure-related parameters such as crystallinity, crystallite size, lattice parameters, Zn-O bond length, lattice strain, and stress. The texture coefficient (TC(hkl)) analyses revealed a shift in preferential growth orientation from the (200) plane to the (004) plane with increasing Cr concentration. FTIR spectra supported the presence of Zn-O vibrational modes and changes in surface chemistry, while SEM images showed morphology evolution and increased surface complexity with doping.eninfo:eu-repo/semantics/openAccessX-Ray Diffraction (Xrd)Zinc Oxide (Zno)MorphologyChromium DopingComprehensive structural characterization of chromium-doped zinc oxidesArticle10.1007/s12210-025-01340-63626776862-s2.0-105007474670Q2WOS:001503659700001Q20000-0002-2321-14550000-0002-4519-2953