Metallic nanogaps (MNGs) are fundamental components of nanoscale photonic and electronic devices. However, the lack of reproducible, high-yield fabrication methods with nanometric control over the gap-size has hindered practical applications. A patterning technique based on molecular self-assembly and physical peeling is reported here that allows the gap-width to be tuned from more than 30 nm to less than 3 nm. The ability of the technique to define sub-3-nm gaps between dissimilar metals permits the easy fabrication of molecular rectifiers, in which conductive molecules bridge metals with differing work functions. A method is further described for fabricating massively parallel nanogap arrays containing hundreds of millions of ring-shaped ...
Achieving near-atomic-scale electronic nanogaps in a reliable and scalable manner will facilitate fu...
Ultrathin dielectric gaps between metals can trap plasmonic optical modes with surprisingly low loss...
Plasmonic molecules are building blocks of metallic nanostructures that give rise to intriguing opti...
Nanometric gaps in noble metals can harness surface plasmons, collective excitations of the conducti...
We report a new top-down nanofabrication technology to realize large area metal nanowire (m-NW) arra...
We report a new top-down nanofabrication technology to realize large area metal nanowire (m-NW) arra...
We report a new top-down nanofabrication technology to realize large area metal nanowire (m-NW) arra...
ABSTRACT: Pairs of metal nanoparticles with a sub-10 nm gap are an efficient way to achieve extreme ...
We present a new top-down nanofabrication technology to realize large area metal nanowire (m-NW) arr...
Considering the technological difficulties in the existing approaches to form nanoscale gaps, a conv...
Pairs of metal nanoparticles with a sub-10 nm gap are an efficient way to achieve extreme near-field...
The past two decades have witnessed the explosion of activities in the field of surface enhanced Ram...
Narrow nanogaps formed between nanostructures act as hot spots, where the plasmonic properties are s...
Recent technological advances in fabrication methods have allowed researchers to manipulate light-ma...
The confinement of light into nanometer-sized metallic nanogaps can lead to an extremely high field ...
Achieving near-atomic-scale electronic nanogaps in a reliable and scalable manner will facilitate fu...
Ultrathin dielectric gaps between metals can trap plasmonic optical modes with surprisingly low loss...
Plasmonic molecules are building blocks of metallic nanostructures that give rise to intriguing opti...
Nanometric gaps in noble metals can harness surface plasmons, collective excitations of the conducti...
We report a new top-down nanofabrication technology to realize large area metal nanowire (m-NW) arra...
We report a new top-down nanofabrication technology to realize large area metal nanowire (m-NW) arra...
We report a new top-down nanofabrication technology to realize large area metal nanowire (m-NW) arra...
ABSTRACT: Pairs of metal nanoparticles with a sub-10 nm gap are an efficient way to achieve extreme ...
We present a new top-down nanofabrication technology to realize large area metal nanowire (m-NW) arr...
Considering the technological difficulties in the existing approaches to form nanoscale gaps, a conv...
Pairs of metal nanoparticles with a sub-10 nm gap are an efficient way to achieve extreme near-field...
The past two decades have witnessed the explosion of activities in the field of surface enhanced Ram...
Narrow nanogaps formed between nanostructures act as hot spots, where the plasmonic properties are s...
Recent technological advances in fabrication methods have allowed researchers to manipulate light-ma...
The confinement of light into nanometer-sized metallic nanogaps can lead to an extremely high field ...
Achieving near-atomic-scale electronic nanogaps in a reliable and scalable manner will facilitate fu...
Ultrathin dielectric gaps between metals can trap plasmonic optical modes with surprisingly low loss...
Plasmonic molecules are building blocks of metallic nanostructures that give rise to intriguing opti...