We report the large-area alignment of multi-segmented nanowires in nanoscale trenches facilitated by capillary forces. Electrochemically synthesized nanowires between 120 and 250 nm in length are aligned and then etched selectively to remove one segment, resulting in arrays of nanowires with precisely controlled gaps varying between 2 and 30 nm. Crucial to this alignment process is the dispersibility of the nanowires in solution which is achieved by chemically modifying them with hexadecyltrimethylammonium bromide. We found that, even without the formation of an ordered crystalline phase at the droplet edges, the nanowires can be aligned in high yield. To illustrate the versatility of this approach as a nanofabrication technique, the ali...
Because of its excellent charge carrier mobility at the Dirac point, graphene possesses exceptional ...
We demonstrate the ability to precisely control the alignment and placement of large numbers of InAs...
Nanowires are arguably the most studied nanomaterial model to make functional devices and arrays. Al...
Article of record as published may be found at http://dx.doi.org/10.1021/nn405627sWe report the larg...
Summary Nanowires are common building blocks for the bottom-up assembly of electronic and photonic d...
A method for fabricating aligned nanowire arrays on surfaces is shown. Gold and segmented Au/Ni/Au n...
Placing nanowires at the predetermined locations on a substrate represents one of the significant hu...
International audienceAn innovative technique is proposed for the precise and scalable placement of ...
Nanowires constitute the potential building blocks for the emergence of new architectures in nanoele...
Peptide nanostructures assembled from an aromatic diphenylalanine have attracted considerable attent...
Directed-assembly of nanowires on the dielectrics-covered parallel electrode structure is capable of...
We review recent studies of solution-based hierarchical organization of nanowire building blocks. Na...
The nanotechnology world is being more and more attracted toward high aspect ratio one-dimensional n...
ABSTRACT: Because of its excellent charge carrier mobility at the Dirac point, graphene possesses ex...
Patterning and alignment of conductive nanowires are essential for good electrical isolation and hig...
Because of its excellent charge carrier mobility at the Dirac point, graphene possesses exceptional ...
We demonstrate the ability to precisely control the alignment and placement of large numbers of InAs...
Nanowires are arguably the most studied nanomaterial model to make functional devices and arrays. Al...
Article of record as published may be found at http://dx.doi.org/10.1021/nn405627sWe report the larg...
Summary Nanowires are common building blocks for the bottom-up assembly of electronic and photonic d...
A method for fabricating aligned nanowire arrays on surfaces is shown. Gold and segmented Au/Ni/Au n...
Placing nanowires at the predetermined locations on a substrate represents one of the significant hu...
International audienceAn innovative technique is proposed for the precise and scalable placement of ...
Nanowires constitute the potential building blocks for the emergence of new architectures in nanoele...
Peptide nanostructures assembled from an aromatic diphenylalanine have attracted considerable attent...
Directed-assembly of nanowires on the dielectrics-covered parallel electrode structure is capable of...
We review recent studies of solution-based hierarchical organization of nanowire building blocks. Na...
The nanotechnology world is being more and more attracted toward high aspect ratio one-dimensional n...
ABSTRACT: Because of its excellent charge carrier mobility at the Dirac point, graphene possesses ex...
Patterning and alignment of conductive nanowires are essential for good electrical isolation and hig...
Because of its excellent charge carrier mobility at the Dirac point, graphene possesses exceptional ...
We demonstrate the ability to precisely control the alignment and placement of large numbers of InAs...
Nanowires are arguably the most studied nanomaterial model to make functional devices and arrays. Al...