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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Solvothermal synthesis of CuFe2O4 and Fe3O4 nanoparticles with high heating efficiency for magnetic hyperthermia application
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Solvothermal synthesis of CuFe2O4 and Fe3O4 nanoparticles with high heating efficiency for magnetic hyperthermia application

机译:具有高加热效率的CuFe2O4和Fe3O4纳米粒子的溶剂热合成磁体热热性高热效率

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Magnetic nanoparticles with improved heating efficiency are required for an efficient magnetic hyperthermia therapy. In this study, monodisperse CuFe2O4 nanoparticles (NPs) with higher heat generation capability compared to Fe3O4 NPs were synthesized by a solvothermal method using triethylene glycol as solvent, reductant, and stabilizer. X-ray diffraction (XRD) analysis confirmed the single phase formation of CuFe2O4 and Fe3O4 NPs under experimental conditions. Fourier transform infrared spectroscopy (FTIR) confirmed the presence of TREG molecules on the surface of both samples. Nanoparticles with spherical shape were observed by scanning electron microscopy (SEM) and transmission electron microscopy (TEM) with an average particle size of 19.9 and 18.5 nm for CuFe2O4 and Fe3O4 NPs, respectively. The room temperature magnetic measurements indicated that both samples are in the vicinity of transition point from superparamagnetic to single-domain ferromagnetic state with a saturation magnetization of 53.1 and 58.8 emu/g for CuFe2O4 and Fe3O4 NPs, respectively. Moreover, CuFe2O4 NPs showed the lower anisotropy energy compared to Fe3O4 NPs, leading to the faster approach to saturation and slightly more rectangular hysteresis loop. The heating efficacy of the CuFe2O4 and Fe3O4 NPs were investigated under different safe alternating magnetic fields permissible for magnetic hyperthermia therapy (f = 120 kHz, H = 13, 16, and 19 kA/m). The maximum specific absorption rate (SAR) obtained for CuFe2O4 and Fe3O4 NPs were 44.9 and 18.5 W/g, respectively, at magnetic field intensity of 19 Wm and frequency of 120 kHz. The two-fold increase in the SAR value of the CuFe2O4 NPs compared to the Fe3O4 NPs might be attributed to the tuning and better matching of their anisotropy energy with frequency and magnetic field intensity used in magnetic hyperthermia experiments. (C) 2019 Elsevier B.V. All rights reserved.
机译:有效的磁体热疗治疗需要具有改善的加热效率的磁性纳米粒子。在本研究中,通过使用三甘醇作为溶剂,还原剂和稳定剂,通过使用三甘醇的溶剂,还原剂和稳定剂合成与Fe 3 O 4 NP相比的热发电能力的单分散Cufe2O4纳米颗粒(NPS)。 X射线衍射(XRD)分析证实了实验条件下CuFe2O4和Fe3O4 NP的单相形成。傅里叶变换红外光谱(FTIR)证实了两种样品表面上的Treg分子的存在。通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)分别观察具有球形的纳米颗粒,其分别具有19.9和18.5nm的平均粒径为19.9和18.5nm。室温磁性测量表明,两个样品在从超顺磁性的过渡点附近,分别具有53.1和58.8 emu / g的饱和磁化强度为CUFE2O4和Fe 3 O 4 NPS。此外,与FE3O4 NPS相比,CUFE2O4 NPS显示了较低的各向异性能量,导致饱和的速度更快,略高的矩形滞后回路。在允许磁体热疗治疗(F = 120kHz,H = 13,16和19kA / M)的不同安全交替磁场下研究了CuFe2O4和Fe 3 O 4 NP的加热功效。用于CuFe2O4和Fe 3 O 4 NPS获得的最大特异性吸收率(SAR)分别为44.9%和18.5W / g,磁场强度为19wm,频率为120kHz。与Fe3O4 NPS相比,CUFE2O4 NPS的SAR值的两倍增加可能归因于磁体热疗实验中使用的频率和磁场强度的调谐和更好地匹配它们的各向异性能量。 (c)2019 Elsevier B.v.保留所有权利。

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