Maltoni Pierfrancesco, Baričić Miran, Barucca Gianni, Spadaro Maria Chiara, Arbiol Jordi, Yaacoub Nader, Peddis Davide, Mathieu Roland
Department of Materials Science and Engineering, Uppsala University, Box 35, Uppsala, 751 03, Sweden.
Dipartimento di Chimica e Chimica Industriale & INSTM, nM2-Lab, Università degli Studi di, Genova, Via Dodecaneso 31, Genova, 1-16146, Italy.
Phys Chem Chem Phys. 2023 Oct 18;25(40):27817-27828. doi: 10.1039/d3cp03689h.
A set of non-stoichiometric Zn-Co-ferrite nanoparticles (NPs) was prepared by thermal decomposition of metallic complexes, in the presence of oleic acid, and, after a ligand-exchange process, was coated by a hydrophilic surfactant: these NPs were used as seeds in a sol-gel self-combustion synthesis to prepare nanocomposites (NCs) with a fixed weight ratio. Our focus here is the development of an efficient synthetic approach to control the magnetic coupling between a hard-magnetic matrix (Sr-ferrite) and NPs. The physico-chemical synthetic conditions (temperature, pH, colloidal stability) were optimized in order to tune their effect on the final particles' agglomeration in the matrix. We demonstrate that our synthetic approach is a novel way to produce strongly magnetically coupled NCs, where the final extrinsic properties could be tuned by controlling (i) the agglomeration of seeds in the matrix and (ii) their elemental doping.
通过金属配合物在油酸存在下的热分解制备了一组非化学计量的锌钴铁氧体纳米颗粒(NPs),并在配体交换过程后用亲水性表面活性剂进行包覆:这些纳米颗粒用作溶胶 - 凝胶自燃烧合成中的种子,以制备具有固定重量比的纳米复合材料(NCs)。我们这里关注的是开发一种有效的合成方法来控制硬磁基体(锶铁氧体)与纳米颗粒之间的磁耦合。对物理化学合成条件(温度、pH值、胶体稳定性)进行了优化,以调节它们对最终颗粒在基体中团聚的影响。我们证明,我们的合成方法是制备强磁耦合纳米复合材料的一种新方法,其中最终的外在性能可以通过控制(i)基体中种子的团聚和(ii)它们的元素掺杂来调节。