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Key Documents

GF85621923

Silicon

sheet, 40x40mm, thickness 3.0mm, single crystal, p-type, 100%

Sinonimo/i:

Silicon, SI003140

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About This Item

Formula condensata:
Si
Numero CAS:
Peso molecolare:
28.09
Numero MDL:
Codice UNSPSC:
12141911
ID PubChem:
NACRES:
NA.23

Saggio

100%

Forma fisica

sheet

Produttore/marchio commerciale

Goodfellow 856-219-23

P. eboll.

2355 °C (lit.)

Punto di fusione

1410 °C (lit.)

Densità

2.33 g/mL at 25 °C (lit.)

Stringa SMILE

[Si]

InChI

1S/Si
XUIMIQQOPSSXEZ-UHFFFAOYSA-N

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Taiuk Rim et al.
Journal of nanoscience and nanotechnology, 14(1), 273-287 (2014-04-16)
The interest in biologically sensitive field effect transistors (BioFETs) is growing explosively due to their potential as biosensors in biomedical, environmental monitoring and security applications. Recently, adoption of silicon nanowires in BioFETs has enabled enhancement of sensitivity, device miniaturization, decreasing
A H Reshak et al.
Progress in biophysics and molecular biology, 113(2), 327-332 (2013-10-22)
The potential of solar cells have not been fully tapped due to the lack of energy conversion efficiency. There are three important mechanisms in producing high efficiency cells to harvest solar energy; reduction of light reflectance, enhancement of light trapping
Dominique Collard
Frontiers in bioscience (Elite edition), 5, 955-965 (2013-06-12)
In modern life, technologies enabling detection of biological molecules at a low threshold, for health and ecological concerns, are in high demand. Directly interrogating the molecules is a promising direction to clarify the noisy response of conventional assays arising from
Atteq ur Rehman et al.
TheScientificWorldJournal, 2013, 470347-470347 (2014-01-25)
The p-type crystalline silicon wafers have occupied most of the solar cell market today. However, modules made with n-type crystalline silicon wafers are actually the most efficient modules up to date. This is because the material properties offered by n-type
Younes Belmamouni et al.
Journal of nanoscience and nanotechnology, 14(6), 4409-4417 (2014-04-18)
The aim of the present study was to prepare resorbable hydroxyapatite (HA) based bone graft materials reinforced with carbon nanotubes as a way to cope with the inability of pure HA to resorb and its intrinsic brittleness and poor strength

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