Center for Process and Product Technology, Institute of Technological Research, São Paulo, SP 05508-901, Brazil.
Nanotechnology. 2012 May 4;23(17):175704. doi: 10.1088/0957-4484/23/17/175704. Epub 2012 Apr 5.
Nanoparticles were prepared from a NdFeB-based alloy using the hydrogen decrepitation process together with high-energy ball milling and tested as heating agent for magnetic hyperthermia. In the milling time range evaluated (up to 10 h), the magnetic moment per mass at H = 1.59 MA m(-1) is superior than 70 A m(2) kg(-1); however, the intrinsic coercivity might be inferior than 20 kA m(-1). The material presents both ferromagnetic and superparamagnetic particles constituted by a mixture of phases due to the incomplete disproportionation reaction of Nd(2)Fe(14)BH(x) during milling. Solutions prepared with deionized water and magnetic particles exposed to an AC magnetic field (H(max) ~ 3.7 kA m(-1) and f = 228 kHz) exhibited 26 K ≤ ΔT(max) ≤ 44 K with a maximum estimated specific absorption rate (SAR) of 225 W kg(-1). For the pure magnetic material milled for the longest period of time (10 h), the SAR was estimated as ~2500 W kg(-1). In vitro tests indicated that the powders have acceptable cytotoxicity over a wide range of concentration (0.1-100 µg ml(-1)) due to the coating applied during milling.
采用氢致碎裂工艺结合高能球磨,从 NdFeB 基合金中制备纳米颗粒,并将其用作磁热疗的加热剂。在所评估的球磨时间范围内(高达 10 小时),在 H = 1.59 MA m(-1)下的质量磁矩优于 70 A m(2) kg(-1);然而,内禀矫顽力可能低于 20 kA m(-1)。由于在球磨过程中 Nd(2)Fe(14)BH(x)的不完全歧化反应,该材料具有由混合相组成的铁磁性和超顺磁性颗粒。用去离子水制备的溶液和暴露于交流磁场(H(max)~3.7 kA m(-1)和 f = 228 kHz)的磁性颗粒表现出 26 K≤ΔT(max)≤44 K,最大估计比吸收率(SAR)为 225 W kg(-1)。对于最长球磨时间(10 小时)的纯磁性材料,SAR 估计约为 2500 W kg(-1)。体外试验表明,由于在球磨过程中进行了涂层处理,这些粉末在很宽的浓度范围内(0.1-100 µg ml(-1))具有可接受的细胞毒性。