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  4. Nanoporous silicon tubes: the role of geometry in nanostructure formation and application to light emitting diodes
 
research article

Nanoporous silicon tubes: the role of geometry in nanostructure formation and application to light emitting diodes

Plestina, Jelena Vukajlovic
•
Derek, Vedran
•
Francaviglia, Luca  
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2017
Journal Of Physics D-Applied Physics

Obtaining light emission from silicon has been the holy grail of optoelectronics over the last few decades. One of the most common methods for obtaining light emission from silicon is to reduce it to a nanoscale structure, for example by producing porous silicon. Here, we present a method for the large-area fabrication of porous silicon microtubes by the stain etching of silicon micropillar arrays. We explain and model how the formation of the microtubes is influenced by the morphology of the substrate, especially the concave or convex character of the 3D features. Light emission is demonstrated at the micro- and nanoscale respectively by photo- and cathodoluminescence. Finally, we demonstrate a 0.55 cm(2) device that can work as a photodetector with 2.3% conversion efficiency under one sun illumination, and also as a broadband light emitting diode, illustrating the applicability of our results for optoelectronic applications.

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Type
research article
DOI
10.1088/1361-6463/aa7196
Web of Science ID

WOS:000403338800001

Author(s)
Plestina, Jelena Vukajlovic
Derek, Vedran
Francaviglia, Luca  
Amaduzzi, Francesca  
Potts, Heidi
Ivanda, Mile
Fontcuberta I Morral, Anna  
Date Issued

2017

Publisher

Institute of Physics

Published in
Journal Of Physics D-Applied Physics
Volume

50

Issue

26

Article Number

265101

Subjects

porous silicon

•

silicon photonics

•

light emitting diode

•

stain etching

•

micro nano fabrication

•

cathodoluminescence

•

luminescence

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LMSC1  
Available on Infoscience
July 10, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/138916
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