Copyright © 2013 Adriana Gutiérrez et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Temporal evolution of the anodization current of porous silicon samples was studied by means of a model of resistances connected in series that represented the temporal changes of the substrate and of the interface between the substrate and the electrolyte during the porous sample formation process. The porous samples were obtained by means of photoelec-trochemical etching of (100) n-type silicon wafers with different resistivity values, all in the range of 1- 25 cm. The samples were form...
The results of porous silicon formation by anodization of single crystalline silicon wafers in the p...
Si anodic dissolution in acidic fluoride medium has been investigated in different regimes (porous s...
495-497<span style="font-size: 15.5pt;mso-bidi-font-size:8.5pt;font-family:" times="" new="" roman"...
In this paper, the anodization of porous silicon is explained. Porous silicon is formed through elec...
Effect of different anodisation current on porous silicon is investigated by STM (Scanning Tunneling...
Porous silicon layers were grown in hydrofluoric acid solutions under constant anodic currents perio...
A process is presented based on anodization of silicon in the transition region between the porous s...
Porous silicon (PSi) was formed on n-type Si (100) substrates using the laser-assisted electrochemic...
Porous silicon layers were formed on a p-type silicon wafers by electrochemical anodisation. Depende...
The mechanism of formation of porous silicon layer (PSL) has been studied according to the following...
Electrochemical anodization in the transition regime, between porous silicon formation region and el...
Porous silicon microstructures were fabricated by applying potential steps through which both anodic...
A systematic study has been made of the electrical conduction processes through electrically etched ...
The present work is the study of the dark current density for porous silicon which is prepared by p...
The electrolyte stirring method of anodization etching process for manufacturing porous silicon (PS)...
The results of porous silicon formation by anodization of single crystalline silicon wafers in the p...
Si anodic dissolution in acidic fluoride medium has been investigated in different regimes (porous s...
495-497<span style="font-size: 15.5pt;mso-bidi-font-size:8.5pt;font-family:" times="" new="" roman"...
In this paper, the anodization of porous silicon is explained. Porous silicon is formed through elec...
Effect of different anodisation current on porous silicon is investigated by STM (Scanning Tunneling...
Porous silicon layers were grown in hydrofluoric acid solutions under constant anodic currents perio...
A process is presented based on anodization of silicon in the transition region between the porous s...
Porous silicon (PSi) was formed on n-type Si (100) substrates using the laser-assisted electrochemic...
Porous silicon layers were formed on a p-type silicon wafers by electrochemical anodisation. Depende...
The mechanism of formation of porous silicon layer (PSL) has been studied according to the following...
Electrochemical anodization in the transition regime, between porous silicon formation region and el...
Porous silicon microstructures were fabricated by applying potential steps through which both anodic...
A systematic study has been made of the electrical conduction processes through electrically etched ...
The present work is the study of the dark current density for porous silicon which is prepared by p...
The electrolyte stirring method of anodization etching process for manufacturing porous silicon (PS)...
The results of porous silicon formation by anodization of single crystalline silicon wafers in the p...
Si anodic dissolution in acidic fluoride medium has been investigated in different regimes (porous s...
495-497<span style="font-size: 15.5pt;mso-bidi-font-size:8.5pt;font-family:" times="" new="" roman"...