Khlifi N, Ihzaz N, Toulemonde O, Dandre A, Labrugère-Sarroste C, Bessadok M N, Lemine O M, El Mir L
Laboratory of Physics of Materials and Nanomaterials Applied at Environment (LaPhyMNE), Gabes University, Faculty of Sciences in Gabes 6072 Gabes Tunisia
ICMCB-CNRS - Université de Bordeaux 87, avenue du Dr Albert Schweitzer 33608 Pessac cedex France.
RSC Adv. 2024 Aug 30;14(38):27622-27633. doi: 10.1039/d4ra05021e. eCollection 2024 Aug 29.
Cobalt-doped zinc oxide nanoparticles (NPs) were synthesized using a modified sol-gel method. Thereafter, the obtained powder was deposited on a Suprasil glass substrate by employing a pulsed laser deposition (PLD) technique. X-ray diffraction analysis with Rietveld refinement confirmed a hexagonal wurtzite ZnO phase belonging to the 6 space group for both samples in the NP and thin film forms. In particular, the thin film exhibited an intensive (002) XRD peak, indicating that it had a preferred -axis orientation owing to the self-texturing mechanism. No segregated secondary phases were detected. The crystallite structure, morphology, and size were investigated using high-resolution transmission electron microscopy (HRTEM). To study the crystalline quality, structural disorder, and defects in the host lattice, we employed Raman spectroscopy. UV-vis-NIR spectroscopy was performed to confirm the nature of the Co-doped ZnO NP powder and the film. The chemical states of oxygen and zinc in the thin film sample were also investigated X-ray photoelectron spectroscopy (XPS). The - curve could be successfully fitted using both the three-dimensional (3D) spin-wave model and Curie-Weiss law, confirming the mixed state existence of weak ferromagnetic (FM) and paramagnetic (PM) phases. Magnetic interaction was quantitatively studied and explained by polaronic percolation of bound magnetic polarons (BMPs). Analysis of magnetic symmetry of the topological antiferromagnetic as-deposited thin film using torque measurements was performed. Based on a phenomenological model, it was revealed that the structure gives rise to uniaxial magneto-crystalline anisotropy (UMA) with the magnetic easy axis parallel to the -axis.
采用改进的溶胶-凝胶法合成了钴掺杂氧化锌纳米颗粒(NPs)。此后,通过脉冲激光沉积(PLD)技术将所得粉末沉积在Suprasil玻璃衬底上。利用Rietveld精修的X射线衍射分析证实,NP和薄膜形式的两个样品均为属于6空间群的六方纤锌矿ZnO相。特别是,薄膜表现出强烈的(002)XRD峰,表明由于自织构机制,它具有择优的c轴取向。未检测到偏析的第二相。使用高分辨率透射电子显微镜(HRTEM)研究了微晶结构、形态和尺寸。为了研究主体晶格中的晶体质量、结构无序和缺陷,我们采用了拉曼光谱。进行紫外-可见-近红外光谱以确认钴掺杂ZnO NP粉末和薄膜的性质。还通过X射线光电子能谱(XPS)研究了薄膜样品中氧和锌的化学状态。-曲线可以使用三维(3D)自旋波模型和居里-外斯定律成功拟合,证实了弱铁磁(FM)和顺磁(PM)相的混合态存在。通过束缚磁极化子(BMPs)的极化子渗流对磁相互作用进行了定量研究和解释。使用扭矩测量对拓扑反铁磁沉积态薄膜的磁对称性进行了分析。基于一个唯象模型,揭示了该结构产生了单轴磁晶各向异性(UMA),其磁易轴平行于c轴。