Silicon-Based Nanomaterials: Technology and Applications

Silicon has been proven to be remarkably resilient as a commercial electronic material. The microelectronics industry has harnessed nanotechnology to continually push the performance limits of silicon devices and integrated circuits. Rather than shrinking its market share, silicon is displacing “com...

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Year of Publication:2019
Language:English
Physical Description:1 electronic resource (94 p.)
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spelling Kelsall, Robert W. auth
Silicon-Based Nanomaterials: Technology and Applications
Silicon-Based Nanomaterials
MDPI - Multidisciplinary Digital Publishing Institute 2019
1 electronic resource (94 p.)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
Silicon has been proven to be remarkably resilient as a commercial electronic material. The microelectronics industry has harnessed nanotechnology to continually push the performance limits of silicon devices and integrated circuits. Rather than shrinking its market share, silicon is displacing “competitor” semiconductors in domains such as high-frequency electronics and integrated photonics. There are strong business drivers underlying these trends; however, an important contribution is also being made by research groups worldwide, who are developing new configurations, designs, and applications of silicon-based nanoscale and nanostructured materials. This Special Issue features a selection of papers which illustrate recent advances in the preparation of chemically or physically engineered silicon-based nanostructures and their application in electronic, photonic, and mechanical systems.
English
ohmic contact
graphene oxide
optical gain media
nano silica sol
in-situ growth
silicon quantum dots
gold nanoparticles
nanofabrication
thermal reduction
long-term mechanical tests
self-aligned nanowires
silicon carbide
micro-mechanism
telecom wavelengths
nanoparticles
single-crystal Si nanomembrane (Si NMs)
nanowires
localized surface plasmon resonances
C/C composites
thin film transistor
strain engineering
nanomembranes
light emitting devices
quantum photonics
ultrathin nanowires
electroluminescence enhancement
mechanical properties
group-IV semiconductors
self-assembly
silicon
SiC nanowires
fluctuating temperature-humidity conditions
TiO2 insertion layer
3-03921-042-4
language English
format eBook
author Kelsall, Robert W.
spellingShingle Kelsall, Robert W.
Silicon-Based Nanomaterials: Technology and Applications
author_facet Kelsall, Robert W.
author_variant r w k rw rwk
author_sort Kelsall, Robert W.
title Silicon-Based Nanomaterials: Technology and Applications
title_full Silicon-Based Nanomaterials: Technology and Applications
title_fullStr Silicon-Based Nanomaterials: Technology and Applications
title_full_unstemmed Silicon-Based Nanomaterials: Technology and Applications
title_auth Silicon-Based Nanomaterials: Technology and Applications
title_alt Silicon-Based Nanomaterials
title_new Silicon-Based Nanomaterials: Technology and Applications
title_sort silicon-based nanomaterials: technology and applications
publisher MDPI - Multidisciplinary Digital Publishing Institute
publishDate 2019
physical 1 electronic resource (94 p.)
isbn 3-03921-043-2
3-03921-042-4
illustrated Not Illustrated
work_keys_str_mv AT kelsallrobertw siliconbasednanomaterialstechnologyandapplications
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is_hierarchy_title Silicon-Based Nanomaterials: Technology and Applications
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