Institute of Physics, AS CR, v. v. i., Cukrovarnická 10/112, 162 00, Prague 6, Czech Republic.
Nanotechnology. 2011 Aug 26;22(34):345701. doi: 10.1088/0957-4484/22/34/345701. Epub 2011 Jul 28.
The structural and magnetic properties of Co(1-x)Zn(x)Fe2O4 ferrites (Co-Zn ferrites) are investigated in a narrow compositional range around x = 0.6, which is of interest because of applications in magnetic fluid hyperthermia. The study by x-ray and neutron diffraction, Mössbauer spectroscopy and magnetization measurements is done on nanoparticles prepared by the coprecipitation method and bulk samples sintered at high temperatures. In spite of the known preference of Zn2+ for tetrahedral (A) sites and Co2+ for octahedral [B] sites, the cations are distributed nearly evenly over the two sites of spinel structure and there is also a variable number of [B] site vacancies (see text), making cobalt ions trivalent. In particular for x = 0.6, the cationic distribution is refined to [Formula: see text] and [Formula: see text] for the 13 nm particles (T(C) = 335 K) and bulk sample (T(C) = 351 K), respectively.
钴锌铁氧体(Co-Zn 铁氧体)在 x = 0.6 附近的窄组成范围内研究了其结构和磁性,这是因为在磁流体热疗中有应用。通过 X 射线和中子衍射、穆斯堡尔光谱和磁化测量研究了通过共沉淀法制备的纳米粒子和在高温下烧结的块状样品。尽管已知 Zn2+ 优先占据四面体(A)位,Co2+ 优先占据八面体 [B]位,但阳离子几乎均匀地分布在尖晶石结构的两个位上,并且还有可变数量的 [B]位空位(见正文),使得钴离子为三价。特别是对于 x = 0.6,阳离子分布分别细化为 13nm 颗粒(T(C) = 335 K)和块状样品(T(C) = 351 K)中的 [Formula: see text]和 [Formula: see text]。