We have developed a simple and reliable method for the fabrication of sub-10 nm wide nanogaps. The self-formed nanogap is based on the stoichiometric solid-state reaction between metal and silicon atoms during the silicidation process. The nanogap width is determined by the metal layer thickness. Our proposed method can produce symmetric and asymmetric electrode nanogaps, as well as multiple nanogaps within one unique process step, for potential application to biological/chemical sensors and nanoelectronics, such as resistive switches, storage devices, and vacuum channel transistors. This method provides high throughput and it is suitable for large-scale production
A simple method for the fabrication of self-aligned nanogaps and fluidic nanochannels by using conve...
Nanogap devices are useful in several applications and together with other novel solutions represent...
We have designed and manufactured silicon nanogaps aimed at electrically interfacing molecules, util...
We developed a simple and reliable method for the fabrication of sub-10-nm wide nanogaps. The self-f...
[[abstract]]We demonstrated a sidewall spacer nanofabrication technique for nanogap, electrodes fabr...
[[abstract]]We demonstrated a sidewall spacer nanofabrication technique for nanogap, electrodes fabr...
[[abstract]]We demonstrated a sidewall spacer nanofabrication technique for nanogap, electrodes fabr...
[[abstract]]We demonstrated a sidewall spacer nanofabrication technique for nanogap, electrodes fabr...
[[abstract]]We demonstrated a sidewall spacer nanofabrication technique for nanogap, electrodes fabr...
[[abstract]]We demonstrated a sidewall spacer nanofabrication technique for nanogap, electrodes fabr...
A lithography-independent and wafer scale method to fabricate a metal nanogap structure is demon-str...
We developed a procedure for the fabrication of sub 1 nm gap Au electrodes via electromigration. Sel...
Two simple lithography-independent methods by underetching the metal and using SiO2 sidewall as sacr...
Nanogap electrodes have uses in fields such as chemical sensing, molecular transport, plasmonics and...
We report a thermal oxidation process for the fabrication of nanogaps of less than 50 nmin dimension...
A simple method for the fabrication of self-aligned nanogaps and fluidic nanochannels by using conve...
Nanogap devices are useful in several applications and together with other novel solutions represent...
We have designed and manufactured silicon nanogaps aimed at electrically interfacing molecules, util...
We developed a simple and reliable method for the fabrication of sub-10-nm wide nanogaps. The self-f...
[[abstract]]We demonstrated a sidewall spacer nanofabrication technique for nanogap, electrodes fabr...
[[abstract]]We demonstrated a sidewall spacer nanofabrication technique for nanogap, electrodes fabr...
[[abstract]]We demonstrated a sidewall spacer nanofabrication technique for nanogap, electrodes fabr...
[[abstract]]We demonstrated a sidewall spacer nanofabrication technique for nanogap, electrodes fabr...
[[abstract]]We demonstrated a sidewall spacer nanofabrication technique for nanogap, electrodes fabr...
[[abstract]]We demonstrated a sidewall spacer nanofabrication technique for nanogap, electrodes fabr...
A lithography-independent and wafer scale method to fabricate a metal nanogap structure is demon-str...
We developed a procedure for the fabrication of sub 1 nm gap Au electrodes via electromigration. Sel...
Two simple lithography-independent methods by underetching the metal and using SiO2 sidewall as sacr...
Nanogap electrodes have uses in fields such as chemical sensing, molecular transport, plasmonics and...
We report a thermal oxidation process for the fabrication of nanogaps of less than 50 nmin dimension...
A simple method for the fabrication of self-aligned nanogaps and fluidic nanochannels by using conve...
Nanogap devices are useful in several applications and together with other novel solutions represent...
We have designed and manufactured silicon nanogaps aimed at electrically interfacing molecules, util...