Kadam Ram H, Shitole Ravi, Kadam Santosh B, Desai Kirti, Birajdar Atul P, Barote Vinod K, Batoo Khalid Mujasam, Hussain Sajjad, Shirsath Sagar E
Materials Research Laboratory, Srikrishna Mahavidyalaya Gunjoti, Omerga 413613, India.
Department of Physics, Lal Bahadur Shastri Senior College, Partur 431501, India.
Nanomaterials (Basel). 2023 Mar 24;13(7):1165. doi: 10.3390/nano13071165.
The stoichiometric compositions of a ferrite system with a chemical formula CoCrDyFeO where x = 0.0, 0.025, 0.05, 0.075 and 0.1 were prepared by the sol-gel auto-combustion method. The structural, morphological and magnetic properties were studied by the X-ray diffraction (XRD), infra-red spectroscopy (IR), scanning electron microscopy, transmission electron microscopy and vibrating sample magnetometer. XRD analysis confirmed the cubic spinel structure of the prepared samples without the presence of any impurity and secondary phases. Selected area electron diffraction and IR measurements gives further confirmation to the XRD observations. Considering that strain mechanism, elastic properties and cation distribution play a major role for controlling the magnetic properties and therefore these properties were precisely evaluated through reliable methodologies such as XRD and IR data. The cation distribution was determined by the X-ray diffraction data which are further supported by the magnetization studies. Magnetoelectric properties of CoCrDyFeO + BaTiO have also been investigated. The mechanisms involved are discussed in the manuscript.
通过溶胶-凝胶自燃法制备了化学式为CoCrDyFeO(其中x = 0.0、0.025、0.05、0.075和0.1)的铁氧体系统的化学计量组成。通过X射线衍射(XRD)、红外光谱(IR)、扫描电子显微镜、透射电子显微镜和振动样品磁强计研究了其结构、形态和磁性。XRD分析证实了所制备样品的立方尖晶石结构,不存在任何杂质和次生相。选区电子衍射和IR测量进一步证实了XRD的观察结果。考虑到应变机制、弹性性质和阳离子分布对控制磁性起着主要作用,因此通过XRD和IR数据等可靠方法对这些性质进行了精确评估。阳离子分布由X射线衍射数据确定,磁化研究进一步支持了该数据。还研究了CoCrDyFeO + BaTiO的磁电性质。手稿中讨论了其中涉及的机制。