State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China.
Nanoscale. 2016 Sep 28;8(36):16187-91. doi: 10.1039/c6nr04810b. Epub 2016 Sep 6.
A simple one-step solution-phase synthesis of iron-cobalt-phosphide ((Fe1-xCox)2P) nanorods (NRs) is reported in this paper. Through the control of the amount of Co in the samples, the crystal structure of (Fe1-xCox)2P NRs changes from a pure Fe-rich hexagonal Fe2P type structure to a mixture of Fe-rich hexagonal Fe2P and Co-rich orthorhombic Co2P type structures. These samples show superparamagnetic behavior at room temperature and ferromagnetic properties at 10 K. When the Co composition is 0.09, the (Fe0.91Co0.09)2P sample has the highest coercivity around 5.74 kOe at 10 K. The current route provides a new and general chemical method for tunable preparation of (Fe1-xCox)2P (x < 0.28) NRs, which are significant for the development of new iron- or cobalt-rich permanent magnet materials without rare-earth or noble metals.
本文报道了一种铁钴磷((Fe1-xCox)2P)纳米棒(NRs)的简单一步溶液法合成。通过控制样品中 Co 的含量,可以将(Fe1-xCox)2P NRs 的晶体结构从纯富铁的六方 Fe2P 型结构转变为富铁的六方 Fe2P 和富钴的正交 Co2P 型结构的混合物。这些样品在室温下表现出超顺磁性,在 10 K 下表现出铁磁性。当 Co 组成达到 0.09 时,(Fe0.91Co0.09)2P 样品在 10 K 时具有最高的矫顽力约为 5.74 kOe。该方法为可调谐制备(Fe1-xCox)2P(x < 0.28)NRs 提供了一种新的通用化学方法,对于开发不含稀土或贵金属的新型富铁或富钴永磁材料具有重要意义。