|composition||, >99% (Silicon-basis)|
|diam. × L||150 nm ± 30 nm × 20 μm ± 2 μm|
|density||0.773 g/mL at 25 °C|
This material can be used in a variety of electronic and optical devices including transistors, photovoltaics, sensors and piezoelectric generators. They can be assembled onto different substrates, such as flexible or transparent ones amongst others.
1) Freer, E. M.; Grachev, O.; Duan, X.; Martin, S.; Stumbo, D. P. Nat. Nanotechnol., 2010, 5, 525-530.
2) McAlpine, M. C.; Ahmad, H.; Wang, D.; Heath, J. R. Nat. Mater., 2007, 6, 379-384.
Typically 1 μg/mL in Isopropyl alcohol
Product of Nanosys, Inc.
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P-I-P doped, diam. × L 150 nm ± 30 nm × 20 μm ± 2 μm, 1 x 106 wires/mL
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diam. × L 115 nm × 20-50 μm, 0.5% in isopropanol (suspension)
|Precautionary statements||P210-P261-P305 + P351 + P338|
|Hazard Codes (Europe)||F,Xi|
|Risk Statements (Europe)||11-36-67|
|Safety Statements (Europe)||7-16-24/25-26|
|Flash Point(F)||53.6 °F|
|Flash Point(C)||12 °C|
Aldrich® Materials Science is proud to offer a selection of high-purity silicon nanowires for use in a variety of high-technology applications. The nanowires are available monodispersed either undope...
Material Matters Volume 6 Article 1
Keywords: Materials Science, Nanomaterials, Nanotubes, Photovoltaics
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