Cas no 14177-55-0 (Nickel Molybdenum Oxide)

Nickel Molybdenum Oxide (NiMoO?) is a mixed transition metal oxide with notable catalytic and electrochemical properties. Its unique structure, combining nickel and molybdenum in a single-phase material, enhances redox activity and stability, making it suitable for applications in catalysis, energy storage, and sensors. The compound exhibits high electrical conductivity and thermal stability, which are advantageous in processes like hydrocarbon reforming and lithium-ion battery electrodes. Its ability to facilitate oxygen evolution reactions (OER) also positions it as a promising material for water-splitting technologies. The synergistic effects of nickel and molybdenum contribute to improved performance in demanding environments, ensuring efficiency and durability in industrial and research applications.
Nickel Molybdenum Oxide structure
Nickel Molybdenum Oxide structure
Product Name:Nickel Molybdenum Oxide
CAS No:14177-55-0
MF:MoNiO4
MW:218.631004333496
MDL:MFCD00016255
CID:87268
PubChem ID:84241
Update Time:2025-05-25

Nickel Molybdenum Oxide Chemical and Physical Properties

Names and Identifiers

    • molybdenum nickel tetraoxide
    • Nickel Molybdenum Oxide
    • dioxido(dioxo)molybdenum,nickel(2+)
    • Nickel(II) molybdate(VI)
    • Molybdenum nickel oxide (MoNiO4)
    • NICKEL MOLYBDATE
    • nickel(2+) dioxido(dioxo)molybdenum
    • nickel(2+) molybdate
    • Nickel(II) molybdate
    • NiMoO4,defect rock salt
    • dioxido(dioxo)molybdenum
    • bis(oxidanidyl)-dioxo-molybdenum
    • nickelous diketo(dioxido)molybdenum
    • Nickel molybdate 99.5%
    • molybdenumnickeloxide(monio4)
    • MFCD00016255
    • AKOS015916214
    • EINECS 238-034-5
    • 14177-55-0
    • EC 238-034-5
    • dioxido(dioxo)molybdenum;nickel(2+)
    • MDL: MFCD00016255
    • Inchi: 1S/Mo.Ni.4O/q;+2;;;2*-1
    • InChI Key: NLPVCCRZRNXTLT-UHFFFAOYSA-N
    • SMILES: [Mo](=O)(=O)([O-])[O-].[Ni+2]

Computed Properties

  • Exact Mass: 219.82000
  • Monoisotopic Mass: 219.82
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 2
  • Hydrogen Bond Acceptor Count: 4
  • Heavy Atom Count: 6
  • Rotatable Bond Count: 0
  • Complexity: 62.2
  • 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
  • Surface Charge: 0
  • Tautomer Count: nothing
  • XLogP3: nothing
  • Topological Polar Surface Area: 80.3A^2

Experimental Properties

  • Color/Form: Green and odorless powder. Cobalt molybdate and nickel molybdate are isomorphic. They are pseudotetragonal, but the real crystal form is monoclinic
  • Density: α: 3.5; β: 4.9 [KIR81]
  • Melting Point: 970℃ [KIR78]
  • Water Partition Coefficient: Soluble in water (4652 mg/L at 20C).
  • PSA: 80.26000
  • LogP: -0.47520
  • Solubility: Insoluble

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Additional information on Nickel Molybdenum Oxide

Nickel Molybdenum Oxide: A Comprehensive Overview

Nickel Molybdenum Oxide, also known as Nickel Molybdenum Oxide (CAS No. 14177-55-0), is a compound that has garnered significant attention in the fields of materials science and catalysis. This compound, with the chemical formula NiMoO?, is a mixed oxide of nickel and molybdenum. It is widely recognized for its unique electronic and structural properties, making it a valuable material in various industrial and research applications.

The synthesis of Nickel Molybdenum Oxide typically involves a combination of nickel and molybdenum precursors, followed by thermal treatment to form the final oxide structure. Recent studies have explored innovative methods such as sol-gel synthesis, co-precipitation, and microwave-assisted synthesis to optimize the material's properties. These advancements have led to the development of nanoscale structures with enhanced surface area and catalytic activity.

Nickel Molybdenum Oxide exhibits exceptional catalytic performance in various reactions, including the oxidation of alcohols, ketones, and alkenes. Its ability to facilitate selective oxidation reactions under mild conditions has made it a promising candidate for green chemistry applications. Recent research has focused on understanding the electronic structure of NiMoO? and its role in catalytic activity. Advanced characterization techniques such as X-ray photoelectron spectroscopy (XPS) and density functional theory (DFT) calculations have provided insights into the active sites and reaction mechanisms.

In addition to its catalytic applications, Nickel Molybdenum Oxide has shown potential in energy storage systems. For instance, it has been investigated as a cathode material for lithium-ion batteries due to its high theoretical capacity and favorable redox properties. Recent studies have demonstrated that nanostructured NiMoO? can exhibit improved electrochemical performance through enhanced ion diffusion and electron transfer.

The environmental impact of Nickel Molybdenum Oxide production and application is another area of active research. Scientists are exploring ways to minimize waste generation during synthesis and improve the recyclability of the material. This aligns with global efforts to promote sustainable practices in materials science.

In conclusion, Nickel Molybdenum Oxide (CAS No. 14177-55-0) is a versatile compound with a wide range of applications in catalysis, energy storage, and environmental chemistry. Ongoing research continues to uncover new properties and potential uses for this material, solidifying its position as an important component in modern materials science.

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