Physics and Chemistry Department, Technical University of Cluj-Napoca, 28 Memorandumului Street, Cluj-Napoca, Romania.
Institut Català de Nanocència i Nanotecnologia (ICN2), Av. Serragalliners S/N, 08193, Bellaterra, Spain.
Sci Rep. 2023 Oct 24;13(1):18175. doi: 10.1038/s41598-023-45285-y.
A Ga-substituted spinel magnetite nanoparticles (NPs) with the formula GaFeO were synthesized using both the one-pot solvothermal decomposition method (TD) and the microwave-assisted heating method (MW). Stable colloidal solutions were obtained by using triethylene glycol, which served as a NPs stabilizer and as a reaction medium in both methods. A narrow size distribution of NPs, below 10 nm, was achieved through selected nucleation and growth. The composition, structure, morphology, and magnetic properties of the NPs were investigated using FTIR spectroscopy, thermal analysis (TA), X-ray diffraction (XRD), transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS), and magnetic measurements. NPs with the expected spinel structure were obtained in the case of the TD method, while the MW method produced, additionally, an important amount of gallium suboxide. The NPs, especially those prepared by TD, have superparamagnetic behavior with 2.02 μB/f.u. at 300 K and 3.06 μB/f.u. at 4.2 K. For the MW sample these values are 0.5 μB/f.u. and 0.6 μB/f.u. at 300 K and 4.2 K, respectively. The MW prepared sample contains a secondary phase and very small NPs which affects both the dimensional distribution and the magnetic behavior of NPs. The NPs were tested in vitro on amniotic mesenchymal stem cells. It was shown that the cellular metabolism is active in the presence of GaFeO NPs and preserves an active biocompatible cytoskeleton.
采用一锅溶剂热分解法(TD)和微波辅助加热法(MW)合成了化学式为 GaFeO 的 Ga 取代尖晶石磁铁矿纳米粒子(NPs)。通过使用三乙二醇获得了稳定的胶体溶液,三乙二醇不仅作为 NPs 的稳定剂,而且在这两种方法中还作为反应介质。通过选择成核和生长,获得了粒径小于 10nm 的窄分布 NPs。使用傅里叶变换红外光谱(FTIR)、热分析(TA)、X 射线衍射(XRD)、透射电子显微镜(TEM)、X 射线光电子能谱(XPS)和磁测量研究了 NPs 的组成、结构、形态和磁性能。在 TD 方法的情况下,得到了具有预期尖晶石结构的 NPs,而 MW 方法则产生了大量的氧化镓。NPs 特别是通过 TD 制备的 NPs 在 300K 时具有超顺磁性,为 2.02μB/f.u.,在 4.2K 时为 3.06μB/f.u.。对于 MW 样品,这些值分别为 300K 和 4.2K 时的 0.5μB/f.u.和 0.6μB/f.u.。MW 制备的样品含有次要相和非常小的 NPs,这会影响 NPs 的尺寸分布和磁性能。将 NPs 进行了体外的羊膜间充质干细胞测试。结果表明,在 GaFeO NPs 的存在下,细胞代谢是活跃的,并保持了活性的生物相容细胞骨架。