The emergent technology of using nanopores for stochastic sensing of biomolecules introduces a demand for the development of simple fabrication methodologies of nanopores in solid state membranes. This process becomes particularly challenging when membranes of composite layer architecture are involved. To overcome this challenge we have employed a focused electron beam induced chemical etching process. We present here the fabrication of nanopores in silicon-on-insulator based membranes in a single step process. In this process, chemical etching of the membrane materials by XeF2 gas is locally accelerated by an electron beam, resulting in local etching, with a top membrane oxide layer preventing delocalized etching of the silicon underneath....
<div><p>Nanofabrication techniques for achieving dimensional control at the nanometer scale are gene...
in nanoporous silicon-based microenvironments. This paper describes the creation of nanoporous, repe...
Nanofabrication techniques for achieving dimensional control at the nanometer scale are generally eq...
Nanopore-based analysis is currently an area of great interest in many disciplines with the potentia...
Nanopores are of great interest in study of DNA sequencing, protein profiling and power generation. ...
Nanopores are of great interest in study of DNA sequencing, protein profiling and power generation. ...
We report a simple and scalable technique for the fabrication of nanopore arrays on freestanding SiN...
We report a simple and scalable technique for the fabrication of nanopore arrays on freestanding SiN...
Solid-state nanopores fabricated by a high-intensity electron beam in ceramic membranes can be fine-...
For biomolecule sensing purposes a solid-state nanopore platform based on silicon has certain advant...
A high-resolution focused electron beam is used for the fabrication of metal nanostructures and devi...
In recent years, Focused Ion Beam (FIB) technology has emerged as an important tool for nanotechnolo...
In this project, nanopore arrays have been fabricated on bulk silicon and on silicon membranes by el...
Solid-state nanopores have emerged as a versatile tool for the characterization of single biomolecul...
A biosensor formed by a combination of silicon (Si) micropore and graphene nanohole technology is ex...
<div><p>Nanofabrication techniques for achieving dimensional control at the nanometer scale are gene...
in nanoporous silicon-based microenvironments. This paper describes the creation of nanoporous, repe...
Nanofabrication techniques for achieving dimensional control at the nanometer scale are generally eq...
Nanopore-based analysis is currently an area of great interest in many disciplines with the potentia...
Nanopores are of great interest in study of DNA sequencing, protein profiling and power generation. ...
Nanopores are of great interest in study of DNA sequencing, protein profiling and power generation. ...
We report a simple and scalable technique for the fabrication of nanopore arrays on freestanding SiN...
We report a simple and scalable technique for the fabrication of nanopore arrays on freestanding SiN...
Solid-state nanopores fabricated by a high-intensity electron beam in ceramic membranes can be fine-...
For biomolecule sensing purposes a solid-state nanopore platform based on silicon has certain advant...
A high-resolution focused electron beam is used for the fabrication of metal nanostructures and devi...
In recent years, Focused Ion Beam (FIB) technology has emerged as an important tool for nanotechnolo...
In this project, nanopore arrays have been fabricated on bulk silicon and on silicon membranes by el...
Solid-state nanopores have emerged as a versatile tool for the characterization of single biomolecul...
A biosensor formed by a combination of silicon (Si) micropore and graphene nanohole technology is ex...
<div><p>Nanofabrication techniques for achieving dimensional control at the nanometer scale are gene...
in nanoporous silicon-based microenvironments. This paper describes the creation of nanoporous, repe...
Nanofabrication techniques for achieving dimensional control at the nanometer scale are generally eq...