We demonstrate that 3keVion beams, formed from the common noble gases, He, Ne, Ar, Kr, and Xe, can controllably “sculpt” nanometer scale pores in silicon nitride films. Single nanometer control of structural dimensions in nanopores can be achieved with all ion species despite a very wide range of sputtering yields and surface energy depositions. Heavy ions shrink pores more efficiently and make thinner pores than lighter ions. The dynamics of nanopore closing is reported for each ion species and the results are fitted to an adatom diffusion model with excellent success. We also present an experimental method for profiling the thickness of the local membrane around the nanopore based on low temperature sputtering and data is presented that p...
A new route will be presented for an all-parallel fabrication of highly flexible, freestanding membr...
We report the fabrication of nanopores in a silicon oxynitride (SiON) membrane by heating a silicon ...
Synthetic solid-state nanopores are being intensively investigated as single-molecule sensors for de...
Solid-state nanopores fabricated by a high-intensity electron beam in ceramic membranes can be fine-...
Single solid-stat nanopores have been fabricated in free-standing layers of amorphous silicon nitrid...
An electron beam can drill nanopores in SiO2 or silicon nitride membranes and shrink a pore to a sma...
Recent work on protein nanopores indicates that single molecule characterization (including DNA sequ...
We explore the ion beam-induced dynamics of the formation of large features at the edges of nanopore...
Nanopore-based single-molecule analysis of biomolecules such as DNA and proteins is a subject of str...
Nanopores with diameters from 20 to 50 nm in silicon nitride (SiNx) windows are useful for single-mo...
The addition of carbon to samples, during imaging, presents a barrier to accurate TEM analysis, the ...
Emmrich D, Beyer A, Nadzeyka A, et al. Nanopore fabrication and characterization by helium ion micro...
ABSTRACT Fabrication of controlled geometry solid-state nanopores (SSNs) using a transmission electr...
The controllable deformation of nanopores was realized by moving a convergent electron beam in a hig...
An array of very uniform cylindrical nanopores with a pore diameter as small as 25 nm has been fabri...
A new route will be presented for an all-parallel fabrication of highly flexible, freestanding membr...
We report the fabrication of nanopores in a silicon oxynitride (SiON) membrane by heating a silicon ...
Synthetic solid-state nanopores are being intensively investigated as single-molecule sensors for de...
Solid-state nanopores fabricated by a high-intensity electron beam in ceramic membranes can be fine-...
Single solid-stat nanopores have been fabricated in free-standing layers of amorphous silicon nitrid...
An electron beam can drill nanopores in SiO2 or silicon nitride membranes and shrink a pore to a sma...
Recent work on protein nanopores indicates that single molecule characterization (including DNA sequ...
We explore the ion beam-induced dynamics of the formation of large features at the edges of nanopore...
Nanopore-based single-molecule analysis of biomolecules such as DNA and proteins is a subject of str...
Nanopores with diameters from 20 to 50 nm in silicon nitride (SiNx) windows are useful for single-mo...
The addition of carbon to samples, during imaging, presents a barrier to accurate TEM analysis, the ...
Emmrich D, Beyer A, Nadzeyka A, et al. Nanopore fabrication and characterization by helium ion micro...
ABSTRACT Fabrication of controlled geometry solid-state nanopores (SSNs) using a transmission electr...
The controllable deformation of nanopores was realized by moving a convergent electron beam in a hig...
An array of very uniform cylindrical nanopores with a pore diameter as small as 25 nm has been fabri...
A new route will be presented for an all-parallel fabrication of highly flexible, freestanding membr...
We report the fabrication of nanopores in a silicon oxynitride (SiON) membrane by heating a silicon ...
Synthetic solid-state nanopores are being intensively investigated as single-molecule sensors for de...