We describe a new, simple, room-temperature wet-chemical approach for assembling Au and Ag nanoparticles into nanowire networks, without the use of lithographic templates. Five to 35 nm-diameter nanowires passivated with a thin organic layer were synthesized by mechanically agitating a biphasic liquid mixture of an aqueous hydrosol containing the nanoparticles, and toluene. Nanowire structure and surface chemistry are discussed based on electron microscopy, UV-visible spectroscopy and thermogravimetric analyses
In nature, many organisms have the ability to adapt and change their structural configuration at the...
[[abstract]]This study presents the synthesis of water-dissolvable sodium sulfate nanowires, where N...
Nanowires have been greatly researched in recent years as many see its potential in the future appli...
We describe a new, simple, room-temperature wet-chemical approach for assembling Au and Ag nanoparti...
We demonstrate a new, room-temperature approach to assemble two-dimensional and three-dimensional ne...
We report a method to make crystalline silver nanowires in water, in the absence of a surfactant or ...
We describe a synthesis of Au wavy nanowires in an aqueous solution in the presence of cetyltrimethy...
A simple procedure to synthesize gold nanowires based on the reduction of hydrogen tetrachloroaurate...
Metal nanowires (NWs) represent a prominent nanomaterial class, the interest in which is fueled by t...
Novel silver nanowire thin films, which consist of interwoven bundles of single-crystalline silver n...
Nanotechnology has received a lot of interest lately that will directly or indirectly benefit our da...
Advancing synthetic capabilities is important for the development of nanoscience and nanotechnology....
Noble metal (Pt, Ag, and Au) nanowires are synthesized by using mesoporous silica (SBA-15) powders a...
The assembly of nanoscale materials into arbitrary, organized structures remains a major challenge i...
Silver nanowires in large quantities can be obtained through a simple method in the absence of a sur...
In nature, many organisms have the ability to adapt and change their structural configuration at the...
[[abstract]]This study presents the synthesis of water-dissolvable sodium sulfate nanowires, where N...
Nanowires have been greatly researched in recent years as many see its potential in the future appli...
We describe a new, simple, room-temperature wet-chemical approach for assembling Au and Ag nanoparti...
We demonstrate a new, room-temperature approach to assemble two-dimensional and three-dimensional ne...
We report a method to make crystalline silver nanowires in water, in the absence of a surfactant or ...
We describe a synthesis of Au wavy nanowires in an aqueous solution in the presence of cetyltrimethy...
A simple procedure to synthesize gold nanowires based on the reduction of hydrogen tetrachloroaurate...
Metal nanowires (NWs) represent a prominent nanomaterial class, the interest in which is fueled by t...
Novel silver nanowire thin films, which consist of interwoven bundles of single-crystalline silver n...
Nanotechnology has received a lot of interest lately that will directly or indirectly benefit our da...
Advancing synthetic capabilities is important for the development of nanoscience and nanotechnology....
Noble metal (Pt, Ag, and Au) nanowires are synthesized by using mesoporous silica (SBA-15) powders a...
The assembly of nanoscale materials into arbitrary, organized structures remains a major challenge i...
Silver nanowires in large quantities can be obtained through a simple method in the absence of a sur...
In nature, many organisms have the ability to adapt and change their structural configuration at the...
[[abstract]]This study presents the synthesis of water-dissolvable sodium sulfate nanowires, where N...
Nanowires have been greatly researched in recent years as many see its potential in the future appli...