Dicaesium dioxido(dioxo)tungsten | CAS No. 13587-19-4

Dicaesium dioxido(dioxo)tungsten

Basic Information

CAS Number

13587-19-4

Molecular Formula

Cs2O4W

Molecular Weight

332.74 g/mol

EINECS

237-019-0

AD

Basic Physical Properties

Melting Point

>350 °C

Boiling Point

°Cat760mmHg

Density

g/cm3

Water Solubility

It is soluble in water.

[O-][W](=O)(=O)[O-].[Cs+].[Cs+]

InChI

InChI=1S/2Cs.4O.W/q2*+1;;;2*-1;

InChIKey

VPXSRGLTQINCRV-UHFFFAOYSA-N

LogP

-0.47520

Complexity

0

Safety Information

View Safety Information

Sensitiveness

Hygroscopic

Synonyms & References

English

  • CesiumTungstenOxidedispersion
  • (beta-4)-tungstate(wo42-dicesium
  • Cesium tungstate, 99.9% trace metals basis
  • CESIUM TUNGSTATE
  • CESIUM TUNGSTEN OXIDE
  • dicesium tungsten tetraoxide
  • CESIUM TUNGSTATE, 99.95%
  • CESIUM TUNGSTATE NANOPARTICLES D50
  • cesium tungstate
  • Cesium tungsten oxide

MDL Number

MFCD00049438

EC Number

237-019-0

FAQ

What regulatory guidelines apply to dicaesium dioxido(dioxo)tungsten (CAS: 13587-19-4)?

Dicaesium dioxido(dioxo)tungsten (CAS: 13587-19-4) falls under the scope of various regulatory guidelines. It is regulated under the Globally Harmonized System of Classification and Labelling of Chemicals (GHS), which includes specific hazard communication requirements. Additionally, it is subject to regulations under the Registration, Evaluation, Authorisation and Restriction of Chemicals (REACH) in the European Union, requiring manufacturers and importers to register substances above a certain tonnage threshold. In the United States, the Environmental Protection Agency (EPA) and the Food and Drug Administration (FDA) have their own set of requirements, focusing on environmental protection and safety in manufacturing, handling, and disposal.

Are there alternatives to dicaesium dioxido(dioxo)tungsten (CAS: 13587-19-4) in synthesis?

There are alternatives to dicaesium dioxido(dioxo)tungsten (CAS: 13587-19-4) that can be used in synthesis, depending on specific needs. For instance, tungsten trioxide (WO3) and tungsten(VI) oxide are common alternatives due to their similar reactivity. Other options include other tungsten compounds like tungsten carbide (WC) or tungsten sulfide (WS2). These alternatives may offer different properties and can be chosen based on the desired outcome of the synthesis process.

What is the market or research trend for dicaesium dioxido(dioxo)tungsten (CAS: 13587-19-4)?

The market for dicaesium dioxido(dioxo)tungsten (CAS: 13587-19-4) is driven by its unique properties, particularly its high electrical conductivity and catalytic activity. Research trends focus on its applications in energy storage, particularly in batteries and supercapacitors, as well as in catalysis for green chemistry processes. With increasing demand for sustainable technologies, there is a growing interest in optimizing the synthesis and use of tungsten-based materials, which may positively impact the market dynamics for this compound.

How should waste containing dicaesium dioxido(dioxo)tungsten (CAS: 13587-19-4) be handled?

Waste containing dicaesium dioxido(dioxo)tungsten (CAS: 13587-19-4) should be managed according to the local and international regulations that govern the handling of hazardous materials. Proper waste collection and disposal methods should be followed, including the use of appropriate containment and packaging to prevent spills or leaks. Professional waste disposal services should be used for incineration or other disposal methods to ensure environmental protection. It is important to adhere to the recommendations outlined in the Material Safety Data Sheet (MSDS) and to follow best practices for waste management to minimize environmental impact.

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