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首页> 外文期刊>Materials science & engineering >Correlation between effects of the particle size and magnetic field strength on the magnetic hyperthermia efficiency of dextran-coated magnetite nanoparticles
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Correlation between effects of the particle size and magnetic field strength on the magnetic hyperthermia efficiency of dextran-coated magnetite nanoparticles

机译:粒径与磁场强度的相关性对葡聚糖型磁铁矿纳米粒子磁体热疗效率的相关性

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A precise control of the particle size of dextran-coated magnetite nanoparticles (Dex-M NPs) was successfully performed by combination of co-precipitation and hydrothermal synthesis methods. The Dex-M NPs, in the size range 3.1-18.9 nm, were used to fabricate biocompatible magnetic fluids for application in magnetic hyperthermia therapy (MHT). The effects of the carrier fluid viscosity, particle size, and applied magnetic field strength (H-appl) on the specific loss power (SLP) of the Dex-M NPs were investigated at a fixed magnetic field frequency (f). The experimental results show that SLP of the larger Dex-M NPs significantly decreases for a highly viscous carrier fluid. Moreover, regardless of the carrier fluid viscosity, the particle size strongly affects the heating efficiency of the Dex-M NPs. SLP ranges from zero for the smallest Dex-M NPs (with particle size d = 3.1 nm) to 55.21 W/g for the largest ones (d = 18.9 nm) at H-appl = 28 kA/m and f = 120 kHz. The most important finding in our research is that, at a fixed frequency, the optimal size of the Dex-M NPs (the size that maximizes SLP) shows a rising trend by enhancing H-appl. In fact, the highest values of SLP at H-appl = 11 kA/m, 13 - 17.5 kA/m, and 19 - 28 kA/m are obtained for the Dex-M NPs with d = 11.5 nm, 15 nm, and 18.9 nm, respectively. The shift of optimal size to the higher values by increasing H-appl could shed light on the correlated effects of the particle size and H-appl on the heating efficiency of magnetic nanoparticles (MNPs) and pave a new way toward the better tuning of them for an effective and biologically safe treatment.
机译:通过共沉淀和水热合成方法的组合成功地进行了对葡聚糖涂覆的磁铁矿纳米颗粒(DEX-M NP)的粒径的精确控制。尺寸范围为3.1-18.9nm的DEX-M NPS用于制造生物相容性磁流体,用于在磁体热疗治疗(MHT)中。在固定磁场频率(F)上研究了在DEX-M NP的特定损耗功率(SLP)上的载流体粘度,粒度和施加的磁场强度(H-APP)的影响。实验结果表明,较大的DEX-M NPS的SLP对于高粘度的载体流体显着降低。此外,无论载体流体粘度如何,粒度强烈影响DEX-M NP的加热效率。对于最大的DEX-M NPS(具有粒度D = 3.1nm)至55.21W / g的SLP为H-Appl = 28ka / m和f = 120kHz的最大DEX-M NPS(具有粒度D = 3.1nm)至55.21 w / g。我们的研究中最重要的发现是,在固定频率下,通过增强H-App,DEX-M NP的最佳尺寸(最大化SLP的尺寸)显示出上升趋势。实际上,在H-Appl = 11ka / m,13-17.5ka / m和19-28ka / m的最高SLP值用于DEX-M NP,具有D = 11.5nm,15nm,和分别为18.9纳米。通过增加H-ampl可以在粒度和H-opp的相关效果上阐明磁性纳米粒子(MNP)的加热效率的相关效果来缩小最佳尺寸对较高值的偏移,并在更好地调整它们的新方法有效和生物安全的治疗。

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