Almutairi Tahani Saad
Department of Chemistry, Taibah University, Madinah 42353, Saudi Arabia.
ACS Phys Chem Au. 2024 Dec 20;5(2):171-182. doi: 10.1021/acsphyschemau.4c00088. eCollection 2025 Mar 26.
Raman spectroscopy offers profound insights into the vibrational dynamics of spinel ferrites, yet the precise assignment of these modes presents a notable challenge. This difficulty stems from the complex structure of spinel ferrites, where metal cations of varying spins populate distinct lattice sites, complicating the spectroscopic characterization. Specifically, cobalt ferrite is extensively utilized in electronic applications due to its superior magnetic properties, influenced significantly by the degree of inversion, denoted as (), and the spin configurations within the crystal. While the magnetic influences of () are well-documented, its impact on other material properties has not been thoroughly investigated through first-principles calculations. This study delves into how varying degrees of inversion from ( = 0) to ( = 1) and different magnetic interactions-ferromagnetism, ferrimagnetism, and antiferromagnetism-affect the Raman vibrational modes of cobalt ferrite. We introduce a new perspective on the mode assignments by comparing our findings with existing experimental data. These insights could significantly refine experimental synthesis protocols, ensuring the production of materials optimized for specific applications. The interplay between inversion and spin configurations not only elucidates the vibrational properties but also enhances our understanding of the fundamental physics governing these versatile materials.
拉曼光谱能够深入洞察尖晶石铁氧体的振动动力学,但对这些模式进行精确归属是一项显著挑战。这一困难源于尖晶石铁氧体的复杂结构,其中不同自旋的金属阳离子占据不同的晶格位置,使得光谱表征变得复杂。具体而言,钴铁氧体因其优异的磁性能而在电子应用中得到广泛应用,其磁性能受反演程度(用()表示)以及晶体中的自旋构型显著影响。虽然()的磁影响已有充分记录,但尚未通过第一性原理计算对其对其他材料性能的影响进行彻底研究。本研究深入探讨了从( = 0)到( = 1)的不同反演程度以及不同的磁相互作用——铁磁性、亚铁磁性和反铁磁性——如何影响钴铁氧体的拉曼振动模式。通过将我们的发现与现有实验数据进行比较,我们为模式归属引入了新的视角。这些见解可显著优化实验合成方案,确保生产出针对特定应用进行优化的材料。反演与自旋构型之间的相互作用不仅阐明了振动特性,还增进了我们对支配这些多功能材料的基本物理原理的理解。