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Merck

243426

Sigma-Aldrich

Strontium nitrate

ACS reagent, ≥99.0%

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100 G
42,40 €
500 G
152,00 €

About This Item

Fórmula lineal:
Sr(NO3)2
Número de CAS:
Peso molecular:
211.63
Número CE:
Número MDL:
Código UNSPSC:
12352302
ID de la sustancia en PubChem:
NACRES:
NB.24
Ensayo:
≥99.0%
grado:
ACS reagent
Formulario:
crystals or chunks

42,40 €


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grado

ACS reagent

Nivel de calidad

Ensayo

≥99.0%

Formulario

crystals or chunks

impurezas

≤0.01% insolubles

pérdida

≤0.1% loss on drying

pH

5.0-7.0 (25 °C, 5%)

mp

570 °C (lit.)

trazas de anión

chloride (Cl-): ≤0.002%
sulfate (SO42-): ≤0.005%

trazas de catión

Ba: ≤0.05%
Ca: ≤0.05%
Fe: ≤5 ppm
Mg: ≤0.10%
Na: ≤0.10%
heavy metals: ≤5 ppm (by ICP-OES)

cadena SMILES

[Sr++].[O-][N+]([O-])=O.[O-][N+]([O-])=O

InChI

1S/2NO3.Sr/c2*2-1(3)4;/q2*-1;+2

Clave InChI

DHEQXMRUPNDRPG-UHFFFAOYSA-N

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Descripción general

Crystal structure analysis of strontium nitrate by single crystal neutron diffraction method suggest that it belongs to the cubic crystal system and space group Pa3.[1]

Aplicación


  • Synthesis and Antimicrobial Analysis of High Surface Area Strontium-Substituted Calcium Phosphate Nanostructures for Bone Regeneration: The study explores the potential of strontium nitrate in bone regeneration through the synthesis of high surface area strontium-substituted calcium phosphate nanostructures with antimicrobial properties (Anwar et al., 2023).
  • Electrochemically Assisted Deposition of Strontium Modified Magnesium Phosphate on Titanium Surfaces: The article describes the use of strontium nitrate in creating coatings on titanium surfaces for improved biomedical applications, enhancing material properties through electrochemical deposition techniques (Meininger et al., 2016).

  • Production of Y-86 and Other Radiometals for Research Purposes Using a Solution Target System: This study involves the use of strontium nitrate in the production of radiometals, including Y-86, for various research and diagnostic purposes, employing a solution target system for effective synthesis (Oehlke et al., 2015).

  • Template-based Fabrication of SrTiO3 and BaTiO3 Nanotubes: The research discusses the utility of strontium nitrate in the template-based fabrication of nanotubes, specifically SrTiO3 and BaTiO3, which are critical in enhancing material properties for various industrial and technological applications (Chen et al., 2009).

Pictogramas

Flame over circleCorrosion

Palabra de señalización

Danger

Frases de peligro

Clasificaciones de peligro

Eye Dam. 1 - Ox. Sol. 1

Código de clase de almacenamiento

5.1A - Strongly oxidizing hazardous materials

Clase de riesgo para el agua (WGK)

WGK 1


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Ian S Metcalfe et al.
Nature chemistry, 11(7), 638-643 (2019-05-28)
All real processes, be they chemical, mechanical or electrical, are thermodynamically irreversible and therefore suffer from thermodynamic losses. Here, we report the design and operation of a chemical reactor capable of approaching thermodynamically reversible operation. The reactor was employed for
Structure refinement of strontium nitrate, Sr(NO3)2, and barium nitrate, Ba(NO3)2.
Nowotny H and Heger G.
Acta Crystallographica Section C, Crystal Structure Communications, 39(8), 952-956 (1983)
H Zhai et al.
Dermatology (Basel, Switzerland), 200(3), 244-246 (2000-06-01)
Previous studies have demonstrated that strontium salts have a potent and broad ability to suppress sensory irritation. To ascertain the possible antipruritic effects of topical strontium salts, we conducted a double-blind randomized study to evaluate the effect of 20% strontium
H Zhai et al.
Contact dermatitis, 42(2), 98-100 (2000-03-07)
Skin care products are complex formulations that may cause sensory irritation symptoms, characterized by stinging, burning, and itching. Substances capable of counteracting sensory irritation are of great practical interest. Strontium salts have been demonstrated to inhibit sensory irritation and inflammation
Sangita Pandey et al.
Journal of magnetic resonance (San Diego, Calif. : 1997), 209(2), 220-226 (2011-02-08)
Electron paramagnetic resonance (EPR) study of Fe³(+) ions doped strontium nitrate (SN) single crystals is performed at liquid nitrogen temperature and at X band frequency. The spin Hamiltonian (SH) parameters are determined from the resonance lines observed at different angular

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