Department of Physics, Cochin University of Science and Technology, Cochin 682 022, India.
Nanotechnology. 2011 Sep 16;22(37):375702. doi: 10.1088/0957-4484/22/37/375702. Epub 2011 Aug 19.
Oxide free stable metallic nanofluids have the potential for various applications such as in thermal management and inkjet printing apart from being a candidate system for fundamental studies. A stable suspension of nickel nanoparticles of ∼ 5 nm size has been realized by a modified two-step synthesis route. Structural characterization by x-ray diffraction and transmission electron microscopy shows that the nanoparticles are metallic and are phase pure. The nanoparticles exhibited superparamagnetic properties. The magneto-optical transmission properties of the nickel nanofluid (Ni-F) were investigated by linear optical dichroism measurements. The magnetic field dependent light transmission studies exhibited a polarization dependent optical absorption, known as optical dichroism, indicating that the nanoparticles suspended in the fluid are non-interacting and superparamagnetic in nature. The nonlinear optical limiting properties of Ni-F under high input optical fluence were then analyzed by an open aperture z-scan technique. The Ni-F exhibits a saturable absorption at moderate laser intensities while effective two-photon absorption is evident at higher intensities. The Ni-F appears to be a unique material for various optical devices such as field modulated gratings and optical switches which can be controlled by an external magnetic field.
无氧化物稳定金属纳米流体具有多种应用的潜力,例如在热管理和喷墨打印中,除了作为基础研究的候选系统之外。通过改进的两步合成路线实现了约 5nm 尺寸的镍纳米粒子的稳定悬浮液。X 射线衍射和透射电子显微镜的结构表征表明,纳米粒子是金属且是单相纯的。纳米粒子表现出超顺磁特性。通过线性光学二色性测量研究了镍纳米流体(Ni-F)的磁光透射特性。磁场依赖的光透射研究表现出偏振相关的光吸收,称为光学二色性,表明悬浮在流体中的纳米粒子是非相互作用的并且具有超顺磁性。然后通过开孔径 Z 扫描技术分析了 Ni-F 在高输入光通量下的非线性光限幅特性。Ni-F 在中等激光强度下表现出饱和吸收,而在更高强度下则表现出有效的双光子吸收。Ni-F 似乎是一种用于各种光学器件的独特材料,例如场调制光栅和光学开关,它们可以通过外部磁场进行控制。