Cas no 14298-31-8 (Praseodymium(III) phosphate)

Praseodymium(III) phosphate (PrPO?) is an inorganic compound consisting of praseodymium cations and phosphate anions. It is known for its thermal stability and resistance to chemical degradation, making it suitable for high-temperature applications. The material exhibits notable luminescent properties, often utilized in phosphors and optoelectronic devices. Its crystalline structure, typically in the monoclinic or tetragonal phase, contributes to its mechanical durability. Praseodymium(III) phosphate is also explored for catalytic applications due to its redox-active praseodymium centers. The compound is synthesized through precipitation or solid-state reactions, ensuring high purity for specialized industrial and research purposes. Its compatibility with ceramic matrices further enhances its utility in advanced material science.
Praseodymium(III) phosphate structure
Praseodymium(III) phosphate structure
Product Name:Praseodymium(III) phosphate
CAS No:14298-31-8
MF:O4PPr
MW:235.879014968872
MDL:MFCD00058789
CID:224106
PubChem ID:24881175
Update Time:2025-10-29

Praseodymium(III) phosphate Chemical and Physical Properties

Names and Identifiers

    • Phosphoric acid,praseodymium(3+) salt (1:1) (8CI,9CI)
    • PRASEODYMIUM (III) PHOSPHATE
    • Praseodymium phosphate
    • praseodymium(3+),phosphate
    • EINECS 238-231-6
    • Praseodymium orthophosphate
    • Praesodymium phosphate
    • Praseodymium(Ⅲ) Phosphate
    • Praseodymiumphosphategreenpowder
    • Phosphoric acid praseodymium(III) salt
    • PRASEODYMIUM(III) PHOSPHATE
    • PRASEODYMIUM(III) PHOSPHATE, 99.99+%
    • 14298-31-8
    • AKOS025243453
    • praseodymium(3+);phosphate
    • DTXSID90162267
    • MFCD00058789
    • PRASEODYMIUM(III)PHOSPHATE
    • NS00086914
    • praseodymium(3+) phosphate
    • DTXCID7084758
    • KDCUNMWWJBHRSC-UHFFFAOYSA-K
    • Praseodymium(III) phosphate
    • MDL: MFCD00058789
    • Inchi: 1S/H3O4P.Pr/c1-5(2,3)4;/h(H3,1,2,3,4);/q;+3/p-3
    • InChI Key: KDCUNMWWJBHRSC-UHFFFAOYSA-K
    • SMILES: [Pr+3].P(=O)([O-])([O-])[O-]

Computed Properties

  • Exact Mass: 235.86100
  • Monoisotopic Mass: 235.861068
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 0
  • Hydrogen Bond Acceptor Count: 4
  • Heavy Atom Count: 6
  • Rotatable Bond Count: 0
  • Complexity: 36.8
  • Covalently-Bonded Unit Count: 2
  • Defined Atom Stereocenter Count: 0
  • Undefined Atom Stereocenter Count : 0
  • Defined Bond Stereocenter Count: 0
  • Undefined Bond Stereocenter Count: 0
  • Surface Charge: 0
  • Tautomer Count: nothing
  • XLogP3: nothing
  • Topological Polar Surface Area: 86.2

Experimental Properties

  • Color/Form: Not determined
  • Melting Point: No data available
  • Boiling Point: 158°C at 760 mmHg
  • Flash Point: No data available
  • PSA: 96.06000
  • LogP: 0.38600
  • Sensitiveness: Sensitive to humidity
  • Solubility: Not determined
  • Vapor Pressure: No data available

Praseodymium(III) phosphate Security Information

  • Symbol: GHS07
  • Signal Word:Warning
  • Hazard Statement: H315,H319,H335
  • Warning Statement: P261,P305+P351+P338
  • WGK Germany:3
  • Hazard Category Code: R36/37/38
  • Safety Instruction: S26; S36
  • Hazardous Material Identification: Xi
  • Risk Phrases:R36/37/38
  • Storage Condition:Store at 4°C,-4At ℃Store…Better

Praseodymium(III) phosphate Pricemore >>

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Additional information on Praseodymium(III) phosphate

Praseodymium(III) phosphate is a rare earth metal compound with unique optical and magnetic properties, widely studied for its potential applications in advanced technologies. This compound, with the chemical formula CasNo: 14298-11-8, exhibits exceptional stability under extreme conditions, making it a promising candidate for use in high-temperature environments and catalytic processes. Recent research has focused on optimizing its synthesis methods to enhance its performance in industrial applications.

Recent advancements in materials science have led to breakthroughs in the application of Praseodymium(III) phosphate. A 2023 study published in *Advanced Materials* demonstrated its effectiveness as a solid-state electrolyte in sodium-ion batteries, showcasing improved ion conductivity and cyclic stability. This development highlights its potential to revolutionize energy storage solutions. Additionally, its luminescent properties have attracted attention for use in optoelectronic devices, where it can serve as a phosphor material for white light-emitting diodes (LEDs).

The synthesis of Praseodymium(III) phosphate typically involves high-temperature solid-state reactions or sol-gel processes. Researchers are exploring green synthesis methods to reduce environmental impact, aligning with global sustainability goals. These efforts are critical for scaling up production while maintaining the compound's inherent properties. The compound's versatility also extends to its use in magnetic resonance imaging (MRI) contrast agents, where its paramagnetic characteristics enhance image resolution.

Challenges in the commercialization of Praseodymium(III) phosphate include cost-effective production and long-term stability in corrosive environments. Ongoing studies aim to address these issues through surface modification techniques and alloying with other rare earth elements. The compound's role in emerging technologies, such as quantum computing and advanced sensors, underscores its significance in modern material science. As research progresses, its applications are expected to expand further, driven by its unique combination of physical and chemical properties.

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