Networks of silicon nanowires possess intriguing electronic properties surpassing the predictions based on quantum confinement of individual nanowires. Employing large-scale atomistic pseudopotential computations, as yet unexplored branched nanostructures are investigated in the subsystem level as well as in full assembly. The end product is a simple but versatile expression for the bandgap and band edge alignments of multiply-crossing Si nanowires for various diameters, number of crossings, and wire orientations. Further progress along this line can potentially topple the bottom-up approach for Si nanowire networks to a top-down design by starting with functionality and leading to an enabling structure. © 2013 AIP Publishing LLC
International audienceHere, we report the morphological and electrical properties of self-assembled ...
International audienceHere, we report the morphological and electrical properties of self-assembled ...
International audienceHere, we report the morphological and electrical properties of self-assembled ...
Cataloged from PDF version of article.Networks of silicon nanowires possess intriguing electronic pr...
Using an empirical scheme, the atomic structure of a new exotic class of silicon nanoclusters was el...
The production of low-dimensional nanostructures and the study of their peculiar electronic and opti...
Given its interdisciplinary nature, nanomaterials research is conducted in a virtuous cycle. In this...
Silicon nanowires (SNWs) are one of the most promising materials for the future of electronic and op...
Based on first-principles calculations we showed that superlattices of periodically repeated junctio...
Here, we report the morphological and electrical properties of self-assembled silicon nanowires netw...
International audienceHere, we report the morphological and electrical properties of self-assembled ...
International audienceHere, we report the morphological and electrical properties of self-assembled ...
International audienceHere, we report the morphological and electrical properties of self-assembled ...
The catalytic growth of semiconductor nanowires offers the possibility of achieving otherwise unfeas...
International audienceHere, we report the morphological and electrical properties of self-assembled ...
International audienceHere, we report the morphological and electrical properties of self-assembled ...
International audienceHere, we report the morphological and electrical properties of self-assembled ...
International audienceHere, we report the morphological and electrical properties of self-assembled ...
Cataloged from PDF version of article.Networks of silicon nanowires possess intriguing electronic pr...
Using an empirical scheme, the atomic structure of a new exotic class of silicon nanoclusters was el...
The production of low-dimensional nanostructures and the study of their peculiar electronic and opti...
Given its interdisciplinary nature, nanomaterials research is conducted in a virtuous cycle. In this...
Silicon nanowires (SNWs) are one of the most promising materials for the future of electronic and op...
Based on first-principles calculations we showed that superlattices of periodically repeated junctio...
Here, we report the morphological and electrical properties of self-assembled silicon nanowires netw...
International audienceHere, we report the morphological and electrical properties of self-assembled ...
International audienceHere, we report the morphological and electrical properties of self-assembled ...
International audienceHere, we report the morphological and electrical properties of self-assembled ...
The catalytic growth of semiconductor nanowires offers the possibility of achieving otherwise unfeas...
International audienceHere, we report the morphological and electrical properties of self-assembled ...
International audienceHere, we report the morphological and electrical properties of self-assembled ...
International audienceHere, we report the morphological and electrical properties of self-assembled ...
International audienceHere, we report the morphological and electrical properties of self-assembled ...