We report a thermal oxidation process for the fabrication of nanogaps of less than 50 nmin dimension.Nanogaps of this dimension are necessary to eliminate contributions from double-layer capacitance in the dielectric detection of protein or nucleic acid. The method combines conventional photolithography and pattern-size reduction techniques. The gaps are fabricated on polysiliconcoated silicon substrate with gold electrodes. The dimensions of the structure are determined by scanning electron microscopy (SEM). An electrical characterization of the structures by dielectric analyzer (DA) shows an improved conductivity as well as enhanced permittivity and capacity with the reduction of gap size, suggesting its potential applications in the...
Nanogap sensors have a wide range of applications as they can provide accurate direct detection of b...
Nanogap electrodes have uses in fields such as chemical sensing, molecular transport, plasmonics and...
We have developed a simple and reliable method for the fabrication of sub-10 nm wide nanogaps. The s...
et al. This is an open access article distributed under the Creative Commons Attribution License, wh...
[[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...
Two simple lithography-independent methods by underetching the metal and using SiO2 sidewall as sacr...
Nanogap sensors have a wide range of applications as they can provide accurate direct detection of b...
Nanogap sensors have a wide range of applications as they can provide accurate direct detection of b...
Nanogap sensors have a wide range of applications as they can provide accurate direct detection of b...
Nanogap sensors have a wide range of applications as they can provide accurate direct detection of b...
Nanogap electrodes have uses in fields such as chemical sensing, molecular transport, plasmonics and...
We have developed a simple and reliable method for the fabrication of sub-10 nm wide nanogaps. The s...
et al. This is an open access article distributed under the Creative Commons Attribution License, wh...
[[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...
Two simple lithography-independent methods by underetching the metal and using SiO2 sidewall as sacr...
Nanogap sensors have a wide range of applications as they can provide accurate direct detection of b...
Nanogap sensors have a wide range of applications as they can provide accurate direct detection of b...
Nanogap sensors have a wide range of applications as they can provide accurate direct detection of b...
Nanogap sensors have a wide range of applications as they can provide accurate direct detection of b...
Nanogap electrodes have uses in fields such as chemical sensing, molecular transport, plasmonics and...
We have developed a simple and reliable method for the fabrication of sub-10 nm wide nanogaps. The s...