Cas no 12182-82-0 (oxo(oxochromiooxy)chromium;hydrate)

Oxo(oxochromiooxy)chromium hydrate is a chromium-based compound characterized by its unique oxo-bridged structure, which imparts stability and reactivity in specialized chemical applications. This material is often utilized in catalysis and inorganic synthesis due to its ability to facilitate redox reactions and act as a precursor for chromium oxide derivatives. Its hydrated form enhances solubility in polar solvents, making it suitable for solution-phase processes. The compound's well-defined coordination environment allows for precise control in reaction mechanisms, particularly in oxidation processes. Its thermal and chemical stability further supports its use in high-temperature applications, while its reproducible synthesis ensures consistent performance in research and industrial settings.
oxo(oxochromiooxy)chromium;hydrate structure
12182-82-0 structure
Product Name:oxo(oxochromiooxy)chromium;hydrate
CAS No:12182-82-0
MF:Cr2H2O4
MW:170.005683422089
MDL:MFCD00149662
CID:86691
PubChem ID:91886630
Update Time:2025-05-25

oxo(oxochromiooxy)chromium;hydrate Chemical and Physical Properties

Names and Identifiers

    • CHROMIUM (III) OXIDE HYDRATE, 98
    • Chromium sesquioxide hydrate
    • Chromium(3+) oxide hydrate
    • BCP04300
    • 12182-82-0
    • chromium oxide hydrate
    • CHROMIUM OXIDE (CR2O3), HYDRATE
    • Oxo(oxochromiooxy)chromium;hydrate
    • MFCD00149662
    • Chromium(III) oxide hydrate
    • Chromium (III) oxide hydrate
    • Chromium(III) oxide hydrat
    • oxo(oxochromiooxy)chromium;hydrate
    • MDL: MFCD00149662
    • Inchi: 1S/2Cr.H2O.3O/h;;1H2;;;
    • InChI Key: UJRBOEBOIXOEQK-UHFFFAOYSA-N
    • SMILES: [Cr](=O)O[Cr]=O.O

Computed Properties

  • Exact Mass: 169.87600
  • Monoisotopic Mass: 169.876318g/mol
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 4
  • Hydrogen Bond Acceptor Count: 4
  • Heavy Atom Count: 6
  • Rotatable Bond Count: 0
  • Complexity: 34.2
  • 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
  • Topological Polar Surface Area: 44.4?2

Experimental Properties

  • Color/Form: Not available
  • Density: Not available
  • Melting Point: Not available
  • Boiling Point: Not available
  • Flash Point: Not available
  • PSA: 52.60000
  • LogP: -0.37030
  • Solubility: Not available
  • Vapor Pressure: Not available

oxo(oxochromiooxy)chromium;hydrate Customs Data

  • HS CODE:2819900000
  • Customs Data:

    China Customs Code:

    2819900000

oxo(oxochromiooxy)chromium;hydrate Pricemore >>

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Additional information on oxo(oxochromiooxy)chromium;hydrate

Oxo(Oxochromiooxy)Chromium Hydrate: A Comprehensive Overview

Oxo(Oxochromiooxy)Chromium Hydrate, identified by the CAS number 12182-82-0, is a compound of significant interest in the fields of chemistry and materials science. This compound, often referred to as oxo(oxochromiooxy)chromium hydrate, has garnered attention due to its unique properties and potential applications in various industries. Recent studies have shed light on its structural characteristics, reactivity, and potential uses, making it a subject of ongoing research.

The CAS number 12182-82-0 uniquely identifies this compound in chemical databases, ensuring consistency in its reference across scientific literature and industrial applications. The term oxo(oxochromiooxy)chromium hydrate highlights the presence of chromium in a specific oxidation state, along with oxygen atoms forming part of its structure. This nomenclature underscores the compound's chemical composition and its hydrated form, which plays a crucial role in its physical and chemical properties.

Recent advancements in analytical techniques have allowed researchers to delve deeper into the structural elucidation of oxo(oxochromiooxy)chromium hydrate. High-resolution spectroscopy and X-ray diffraction studies have revealed intricate details about its crystallographic structure, which is characterized by a layered arrangement of chromium-oxygen-hydrogen units. These findings have been instrumental in understanding the compound's electronic configuration and bonding interactions.

One of the most promising aspects of oxo(oxochromiooxy)chromium hydrate is its catalytic activity. Studies published in leading chemistry journals have demonstrated its effectiveness as a catalyst in various organic transformations, particularly in oxidation reactions. Its ability to facilitate these reactions under mild conditions has made it a valuable tool in green chemistry initiatives, aligning with global efforts to reduce environmental impact.

In addition to its catalytic applications, oxo(oxochromiooxy)chromium hydrate has shown potential in energy storage technologies. Research indicates that this compound may serve as an electrode material in advanced batteries due to its favorable electronic properties and high energy density. These findings have sparked interest among materials scientists exploring sustainable energy solutions.

The synthesis of oxo(oxochromiooxy)chromium hydrate involves a multi-step process that requires precise control over reaction conditions. Recent breakthroughs in synthetic methodologies have improved the yield and purity of this compound, making it more accessible for large-scale applications. These developments are expected to drive further research into its practical uses.

From an environmental standpoint, understanding the stability and degradation pathways of oxo(oxochromiooxy)chromium hydrate is crucial for assessing its ecological impact. Studies conducted under simulated environmental conditions suggest that this compound exhibits moderate stability, with degradation products posing minimal risk to ecosystems when handled responsibly.

In conclusion, oxo(oxochromiooxy)chromium hydrate (CAS No. 12182-82-0) stands out as a versatile compound with diverse applications across multiple disciplines. Its unique properties, coupled with recent advancements in synthesis and characterization techniques, position it as a key player in future technological innovations. As research continues to uncover new facets of this compound, its role in shaping modern chemistry and materials science is set to expand further.

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