We report on the fabrication of periodic arrays of deep nanopores with high aspect ratios in crystalline silicon. The radii and pitches of the pores were defined in a chromium mask by means of deep UV scan and step technology. The pores were etched with a reactive ion etching process with SF6, optimized for the formation of deep nanopores. We have realized structures with pitches between 440 and 750 nm, pore diameters between 310 and 515 nm, and depth to diameter aspect ratios up to 16. To the best of our knowledge, this is the highest aspect ratio ever reported for arrays of nanopores in silicon made with a reactive ion etching process. Our experimental results show that the etching rate of the nanopores is aspect-ratio-dependent, and is m...
A periodic array of silicon pillars was photoelectrochemically fabricated using the two-step etching...
International audienceDifferent processes involving an inductively coupled plasma reactor are presen...
Alumina nanopores seem to be very promising concerning many applications, such as DNA analysis 1‐2, ...
We report on the fabrication of periodic arrays of deep nanopores with high aspect ratios in crystal...
International audienceThis paper highlights that combining laser interference lithography and electr...
In this project, nanopore arrays have been fabricated on bulk silicon and on silicon membranes by el...
The fabrication of macropores in crystalline silicon by photoelectrochemical etching in a hydrofluor...
International audienceThis work describes the formation of submicrometer pore arrays using nanoimpri...
Periodic arrays of deep nanopores made in silicon with reactive ion etching and deep UV lithograph
This paper reports on the fabrication of two-dimensional macropore arrays by electrochemical etching...
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. ...
We present a method to create at the same time trenches and ordered macropore arrays during photo-el...
Nanoporous structures have attracted great attention in electronics, sensor and storage devices, and...
Nanoporous silicon (NPSi) has received significant attention for its potential to contribute to a la...
A periodic array of silicon pillars was photoelectrochemically fabricated using the two-step etching...
International audienceDifferent processes involving an inductively coupled plasma reactor are presen...
Alumina nanopores seem to be very promising concerning many applications, such as DNA analysis 1‐2, ...
We report on the fabrication of periodic arrays of deep nanopores with high aspect ratios in crystal...
International audienceThis paper highlights that combining laser interference lithography and electr...
In this project, nanopore arrays have been fabricated on bulk silicon and on silicon membranes by el...
The fabrication of macropores in crystalline silicon by photoelectrochemical etching in a hydrofluor...
International audienceThis work describes the formation of submicrometer pore arrays using nanoimpri...
Periodic arrays of deep nanopores made in silicon with reactive ion etching and deep UV lithograph
This paper reports on the fabrication of two-dimensional macropore arrays by electrochemical etching...
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. ...
We present a method to create at the same time trenches and ordered macropore arrays during photo-el...
Nanoporous structures have attracted great attention in electronics, sensor and storage devices, and...
Nanoporous silicon (NPSi) has received significant attention for its potential to contribute to a la...
A periodic array of silicon pillars was photoelectrochemically fabricated using the two-step etching...
International audienceDifferent processes involving an inductively coupled plasma reactor are presen...
Alumina nanopores seem to be very promising concerning many applications, such as DNA analysis 1‐2, ...