Passa al contenuto
Merck
Tutte le immagini(1)

Documenti fondamentali

930911

Sigma-Aldrich

Praseodymium nitrate hexahydrate

99.99% (trace rare earth metals basis)

Sinonimo/i:

Praseodymium(III) nitrate hexahydrate, Nitric acid praseodymium(3+) salt, Praseodymium trinitrate, Praseodymium trinitrate hexahydrate

Autenticatiper visualizzare i prezzi riservati alla tua organizzazione & contrattuali


About This Item

Formula condensata:
Pr(NO3)3·6H2O
Numero CAS:
Peso molecolare:
435.01
Numero MDL:
Codice UNSPSC:
12352302
NACRES:
NA.54
Prezzi e disponibilità al momento non sono disponibili

Grado

for analytical purposes

Livello qualitativo

Saggio

99.99% (trace rare earth metals basis)

Stato

crystals

Impurezze

≤150 ppmtrace (rare earth metals)
≤500 ppm (trace metals)

Punto di fusione

<100 °C ((lit.))

Solubilità

H2O: soluble ((lit.))

Densità

2.233 g/cm3 ((lit.))

Stringa SMILE

O.O.O.O.O.O.[Pr+3].[O-][N+]([O-])=O.[O-][N+]([O-])=O.[O-][N+]([O-])=O

InChI

1S/3NO3.6H2O.Pr/c3*2-1(3)4;;;;;;;/h;;;6*1H2;/q3*-1;;;;;;;+3
LXXCECZPOWZKLC-UHFFFAOYSA-N

Cerchi prodotti simili? Visita Guida al confronto tra prodotti

Descrizione generale

Praseodymium nitrate is a green, crystalline salt commonly found as a hexahydrate. The salt is soluble in polar solvents including water, alcohols, amines, ethers, and acetonitrile. Like many trivalent nitrates, praseodymium nitrate has a low thermal decomposition temperature with onset temperature of 100 °C. Praseodymium nitrate is produced from ores rich in rare earth metals. Dissolving the ores in nitric acid yields solutions of rare earth nitrates, which can be separated by solvent extraction, isolated into individual rare earth metals, and purified.

Applicazioni

Praseodymium nitrate is used in the preparation of praseodymium-doped materials and praseodymium compounds because it is one of the most convenient sources of praseodymium ions. Owing to its high solubility and low thermal decomposition temperature, praseodymium is a particularly useful reagent in reactions that use sol-gel processing and hydrothermal-calcination methods. Like other rare earth metals, praseodymium has a cloud of shielded f-electrons, which allow for long excited state lifetimes and high luminescence yields. Because of these properties, Pr-doped materials and Pr-compounds are used as phosphors in optics and added to oxides used in ceramics for colorful effects. Researchers continue to find ways to leverage the unique optical effects. For example, praseodymium metal-organic frameworks synthesized using Pr(NO3)3 have been explored for luminescence-sensing of small molecules [1] and Pr-doped metal oxides researched for improved optical thermometry [2]. Another common application of praseodymium nitrate is the synthesis of double perovskite oxides for solid-oxide fuel cells (SOFC). For example, researchers have shown that praseodymium cobaltites,[3] praseodymium manganates,[4] and praseodymium nickelates [5] offer excellent ionic and electronic conductivities for SOFCs at intermediate temperatures above 400 °C. The unique band structure afforded by Pr3+ ions stabilizes oxygen vacancies, which are integral to ionic diffusion.[5] [6]

Prodotti correlati

N° Catalogo
Descrizione
Determinazione del prezzo

Avvertenze

Warning

Indicazioni di pericolo

Classi di pericolo

Aquatic Acute 1 - Aquatic Chronic 1 - Eye Irrit. 2 - Ox. Sol. 3 - Skin Irrit. 2

Codice della classe di stoccaggio

5.1B - Oxidizing hazardous materials

Classe di pericolosità dell'acqua (WGK)

WGK 2


Scegli una delle versioni più recenti:

Certificati d'analisi (COA)

Lot/Batch Number

Non trovi la versione di tuo interesse?

Se hai bisogno di una versione specifica, puoi cercare il certificato tramite il numero di lotto.

Possiedi già questo prodotto?

I documenti relativi ai prodotti acquistati recentemente sono disponibili nell’Archivio dei documenti.

Visita l’Archivio dei documenti

Self-sustainable protonic ceramic electrochemical cells using a triple conducting electrode for hydrogen and power production.
Ding, H., et al.
Nature Communications, 11, 1907-1907 (2020)
Intermediate-temperature electrochemical performance of a polycrystalline PrBaCo2O5+delta cathode on samarium-doped ceria electrolyte
Chen, D., et al.
Journal of Power Sources, 188, 96-105 (2009)
Praseodymium and gadolinium doped ceria as a cathode material for low temperature solid oxide fuel cells.
Chockalingam, R., et al.
Journal of Power Sources, 250, 80-89 (2014)
A Novel Optical Thermometry Strategy Based on Diverse Thermal Response from Two Intervalence Charge Transfer States.
Gao, Y., et al.
Advances in Functional Materials, 26, 3139?3145-3139?3145 (2016)
Lanthanide metal?organic frameworks containing a novel flexible ligand for luminescence sensing of small organic molecules and selective adsorption.
Wang, X., et al.
Journal of Material Chemistry A, 3, 12777-12785 (2015)

Questions

Reviews

No rating value

Active Filters

Il team dei nostri ricercatori vanta grande esperienza in tutte le aree della ricerca quali Life Science, scienza dei materiali, sintesi chimica, cromatografia, discipline analitiche, ecc..

Contatta l'Assistenza Tecnica.