Nassar Kais Iben, Teixeira Sílvia Soreto, Graça Manuel P F
I3N-Aveiro, Department of Physics, University of Aveiro, 3810-193 Aveiro, Portugal.
Gels. 2025 Aug 19;11(8):657. doi: 10.3390/gels11080657.
Spintronics, an interdisciplinary field merging magnetism and electronics, has attracted considerable interest due to its potential to transform data storage, logic devices, and emerging quantum technologies. Among the materials explored for spintronic applications, metal oxide nanostructures synthesized via sol-gel methods offer a unique combination of low-cost processing, structural tunability, and defect-mediated magnetic control. This comprehensive review presents a critical overview of recent advances in sol-gel-derived magnetic oxides, such as Co-doped ZnO, LaSrMnO, FeO, NiFeO, and transition-metal-doped TiO, with emphasis on synthesis strategies, the dopant distribution, and room-temperature ferromagnetic behavior. Key spintronic functionalities, including magnetoresistance, spin polarization, and magnetodielectric effects, are systematically examined. Importantly, this review differentiates itself from the prior literature by explicitly connecting sol-gel chemistry parameters to spin-dependent properties and by offering a comparative analysis of multiple oxide systems. Critical challenges such as phase purity, reproducibility, and defect control are also addressed. This paper concludes by outlining future research directions, including green synthesis, the integration with 2D materials, and machine-learning-assisted optimization. Overall, this work bridges sol-gel synthesis and spintronic material design, offering a roadmap for advancing next-generation oxide-based spintronic devices.
自旋电子学是一个融合了磁学和电子学的跨学科领域,因其在数据存储、逻辑器件以及新兴量子技术等方面的变革潜力而备受关注。在用于自旋电子学应用的材料中,通过溶胶 - 凝胶法合成的金属氧化物纳米结构具有低成本加工、结构可调控性以及缺陷介导的磁控等独特组合特性。这篇综述全面介绍了溶胶 - 凝胶衍生的磁性氧化物(如钴掺杂氧化锌、镧锶锰氧化物、氧化铁、镍铁氧化物以及过渡金属掺杂的二氧化钛)的最新进展,重点阐述了合成策略、掺杂剂分布以及室温铁磁行为。对包括磁电阻、自旋极化和磁介电效应在内的关键自旋电子学功能进行了系统研究。重要的是,本综述与以往文献的不同之处在于,明确将溶胶 - 凝胶化学参数与自旋相关特性联系起来,并对多种氧化物体系进行了比较分析。还探讨了诸如相纯度、可重复性和缺陷控制等关键挑战。本文最后概述了未来的研究方向,包括绿色合成、与二维材料的集成以及机器学习辅助优化。总体而言,这项工作搭建了溶胶 - 凝胶合成与自旋电子学材料设计之间的桥梁,为推进下一代基于氧化物的自旋电子器件提供了路线图。