Metallic Ni powders with different morphologies including icosahedra, microspheres, and flowerlike clusters composed of nanoflakes were successfully fabricated via polyol process. Alkalinity played the key role in the formation of these novel structures. The as-prepared products were characterized by X-ray diffractometry (XRD), field scanning electron microscopy (FESEM), transmission electron microscope (TEM), and selected area electron diffraction (SAED). A layer-by-layer growing process was demonstrated based on the experimental results. Magnetism investigation revealed that icosahedra and clusters exhibited much enhanced coercivity. (c) 2009 Elsevier B.V. All rights reserved
Nano-sized nickel particles have been synthesized by a bottom-up approach, using hydrazine as the re...
A facile reduction approach with nickel acetylacetonate, Ni(acac) 2, and sodium borohydride or super...
The present manuscript is focused on syntheses of anisotropic shape metallic particles in nanometric...
AbstractWe report the synthesis of nikel (Ni) nanoparticles produced by modified polyol method using...
A modified polyol process for the preparation of nickel powders of rodlike shape Was attempted and r...
Flower-like Ni particles about I gin in diameter have been synthesized by means of a mild chemical s...
International audienceWell crystallized nickel nanoparticles with various diameters were prepared by...
International audienceWell crystallized nickel nanoparticles with various diameters were prepared by...
Well dispersed nickel powders with uniform size were synthesized using hydrazine hydrate as reducing...
Uniform Ni microflowers and Co microspheres have been synthesized by a simple one-pot hydrothermal m...
Ni nano-micro structures have been synthesized via a solution reduction route in the presence of eth...
AbstractWe report the synthesis of nikel (Ni) nanoparticles produced by modified polyol method using...
Sub-micrometer nickel powders of controlled size and morphology were produced by a surfactant-assist...
We report the effect of reducing agent and surfactant on the morphology, structural and magnetic pro...
Abstract. Ni nanoparticles were mass synthesized by solution reduction process successfully. The inf...
Nano-sized nickel particles have been synthesized by a bottom-up approach, using hydrazine as the re...
A facile reduction approach with nickel acetylacetonate, Ni(acac) 2, and sodium borohydride or super...
The present manuscript is focused on syntheses of anisotropic shape metallic particles in nanometric...
AbstractWe report the synthesis of nikel (Ni) nanoparticles produced by modified polyol method using...
A modified polyol process for the preparation of nickel powders of rodlike shape Was attempted and r...
Flower-like Ni particles about I gin in diameter have been synthesized by means of a mild chemical s...
International audienceWell crystallized nickel nanoparticles with various diameters were prepared by...
International audienceWell crystallized nickel nanoparticles with various diameters were prepared by...
Well dispersed nickel powders with uniform size were synthesized using hydrazine hydrate as reducing...
Uniform Ni microflowers and Co microspheres have been synthesized by a simple one-pot hydrothermal m...
Ni nano-micro structures have been synthesized via a solution reduction route in the presence of eth...
AbstractWe report the synthesis of nikel (Ni) nanoparticles produced by modified polyol method using...
Sub-micrometer nickel powders of controlled size and morphology were produced by a surfactant-assist...
We report the effect of reducing agent and surfactant on the morphology, structural and magnetic pro...
Abstract. Ni nanoparticles were mass synthesized by solution reduction process successfully. The inf...
Nano-sized nickel particles have been synthesized by a bottom-up approach, using hydrazine as the re...
A facile reduction approach with nickel acetylacetonate, Ni(acac) 2, and sodium borohydride or super...
The present manuscript is focused on syntheses of anisotropic shape metallic particles in nanometric...