1.09864
Ammonium iron(II) sulfate solution
c[(NH₄)₂ Fe(SO₄)₂] = 0.1 mol/l (0.1 N), concentrate for 250 mL titration solution, Titrisol®®
Synonyme(s) :
Ammonium Ferrous Sulfate Solution
About This Item
Produits recommandés
product name
Ammonium iron(II) sulfate solution, for 250 mlc[(NH₄)₂ Fe(SO₄)₂] = 0.1 mol/l (0.1 N) Titrisol®
Niveau de qualité
Gamme de produits
Titrisol®
Forme
liquid
Capacité de réaction
reaction type: Complexometric reactions
Concentration
0.1 M
Technique(s)
titration: suitable
pH
0.4 (20 °C in H2O)
Densité
1.25 g/cm3 at 20 °C
Température de stockage
15-25°C
Application
- Regulation of Iron-Ion Transporter SLC11A2 by Three Identical miRNAs.: This study investigates the modulation of iron ion transporters, providing insights into molecular processes involving ammonium iron(II) sulfate, crucial for analytical chemistry applications (Sugino et al., 2022).
- Two-Dimensional Bis(dithiolene)iron(II) Self-Powered UV Photodetectors with Ultrahigh Air Stability.: This research highlights the development of robust UV photodetectors using iron(II)-based materials, demonstrating the potential of ammonium iron(II) sulfate in creating high-performance electronic devices (Wang YC et al., 2021).
- Pencil it in: pencil drawn electrochemical sensing platforms.: Focuses on innovative, cost-effective electrochemical sensors where iron plays a critical role, pertinent to applications in chemical analysis (Foster CW et al., 2016).
- Catalytic effect of different forms of iron in purification of single-walled carbon nanotubes.: Discusses the use of various iron forms, including ammonium iron(II) sulfate, in enhancing the purification processes for carbon-based materials, significant in analytical applications (Suzuki T et al., 2010).
Informations légales
Mention d'avertissement
Danger
Mentions de danger
Classification des risques
Eye Dam. 1 - Met. Corr. 1 - Skin Corr. 1A
Code de la classe de stockage
8B - Non-combustible, corrosive hazardous materials
Classe de danger pour l'eau (WGK)
WGK 1
Point d'éclair (°F)
Not applicable
Point d'éclair (°C)
Not applicable
Certificats d'analyse (COA)
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Protocoles
Polymers are hardly or not at all soluble in the common Karl Fischer solvents. In order to extract the water trapped within the sample the plastic must be dissolved or swollen by means of an appropriate solvent to such an extent that the water can be released through diffusion. Which solvent is appropriate depends on the properties of the plastic.
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