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Merck

GF54682050

Silicon

sphere, 50pcs, diameter 2.0mm, precision sphere grade 25

Sinónimos:

Silicon, SI006820

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About This Item

Fórmula lineal:
Si
Número de CAS:
Peso molecular:
28.09
Número MDL:
Código UNSPSC:
12352300
ID de la sustancia en PubChem:
NACRES:
NA.23

Formulario

spheres

fabricante / nombre comercial

Goodfellow 546-820-50

tamaño de partícula

2 mm

bp

2355 °C (lit.)

mp

1410 °C (lit.)

densidad

2.33 g/mL at 25 °C (lit.)

cadena SMILES

[Si]

InChI

1S/Si

Clave InChI

XUIMIQQOPSSXEZ-UHFFFAOYSA-N

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Descripción general

For updated SDS information please visit www.goodfellow.com.

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Dean G Johnson et al.
Advances in chronic kidney disease, 20(6), 508-515 (2013-11-12)
The development of wearable or implantable technologies that replace center-based hemodialysis (HD) hold promise to improve outcomes and quality of life for patients with ESRD. A prerequisite for these technologies is the development of highly efficient membranes that can achieve
Keith R Martin
Metal ions in life sciences, 13, 451-473 (2014-01-29)
Silicon is the second most abundant element in nature behind oxygen. As a metalloid, silicon has been used in many industrial applications including use as an additive in the food and beverage industry. As a result, humans come into contact
David J Savage et al.
Current opinion in pharmacology, 13(5), 834-841 (2013-07-13)
Biomedical applications of porous silicon include drug delivery, imaging, diagnostics and immunotherapy. This review summarizes new silicon particle fabrication techniques, dynamics of cellular transport, advances in the multistage vector approach to drug delivery, and the use of porous silicon as
Emil Rudobeck et al.
Radiation research, 181(4), 407-415 (2014-03-15)
An unavoidable complication of space travel is exposure to radiation consisting of high-energy charged particles (HZE), such as Fe and Si nuclei. HZE radiation can affect neuronal functions at the level of the synapse or neuronal soma without inducing significant
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

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