Uniform Ni microflowers and Co microspheres have been synthesized by a simple one-pot hydrothermal method with high yield. The products were characterized by X-ray diffraction (XRD), field emission scanning electron microscopy (FESEM), transmission electron microscopy (TEM), selected area electron diffraction (SAED) and superconducting quantum interference device (SQUID). The synthesis of various shaped nanomaterials was achieved using different alkali metal salts. This is the first report on synthesizing Ni and Co nanostructures using different mineralization to modulate the morphology of the final products. In addition, these synthesized Ni and Co nanocrystals exhibit room-temperature enhanced magnetic properties. Such a facile one-pot ap...
Flower-like Ni particles about I gin in diameter have been synthesized by means of a mild chemical s...
Metallic Ni powders with different morphologies including icosahedra, microspheres, and flowerlike c...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2001.Includes bibliograp...
By choosing appropriate microemulsion systems, hexagonal cobalt (Co) and cobalt-nickel (1:1) alloy...
A facile hydrothermal reduction route based on a precipitate slow-release controlled process was dev...
Flower-like nickel nanocone structures are synthesized by a simple chemical reduction method using h...
International audienceBimetallic nickel-cobalt nanoparticles are highly sought for their potential a...
Flower-like nickel nanocone structures are synthesized by a simple chemical reduction method using h...
Flower-like nickel nanocone structures are synthesized by a simple chemical reduction method using h...
International audienceBimetallic nickel-cobalt nanoparticles are highly sought for their potential a...
Soft magnetic materials, generally consisting of iron, nickel or cobalt, are used in numerous electr...
International audienceBimetallic nickel-cobalt nanoparticles are highly sought for their potential a...
By choosing appropriate microemulsion systems, hexagonal cobalt (Co) and cobalt-nickel (1:1) alloy n...
A new procedure for the preparation of amorphous Ni-Co-B nanoparticles is reported, with a detailed ...
A new procedure for the preparation of amorphous Ni-Co-B nanoparticles is reported, with a detailed ...
Flower-like Ni particles about I gin in diameter have been synthesized by means of a mild chemical s...
Metallic Ni powders with different morphologies including icosahedra, microspheres, and flowerlike c...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2001.Includes bibliograp...
By choosing appropriate microemulsion systems, hexagonal cobalt (Co) and cobalt-nickel (1:1) alloy...
A facile hydrothermal reduction route based on a precipitate slow-release controlled process was dev...
Flower-like nickel nanocone structures are synthesized by a simple chemical reduction method using h...
International audienceBimetallic nickel-cobalt nanoparticles are highly sought for their potential a...
Flower-like nickel nanocone structures are synthesized by a simple chemical reduction method using h...
Flower-like nickel nanocone structures are synthesized by a simple chemical reduction method using h...
International audienceBimetallic nickel-cobalt nanoparticles are highly sought for their potential a...
Soft magnetic materials, generally consisting of iron, nickel or cobalt, are used in numerous electr...
International audienceBimetallic nickel-cobalt nanoparticles are highly sought for their potential a...
By choosing appropriate microemulsion systems, hexagonal cobalt (Co) and cobalt-nickel (1:1) alloy n...
A new procedure for the preparation of amorphous Ni-Co-B nanoparticles is reported, with a detailed ...
A new procedure for the preparation of amorphous Ni-Co-B nanoparticles is reported, with a detailed ...
Flower-like Ni particles about I gin in diameter have been synthesized by means of a mild chemical s...
Metallic Ni powders with different morphologies including icosahedra, microspheres, and flowerlike c...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2001.Includes bibliograp...