Cas no 17010-21-8 (Silicate(2-),hexafluoro-, cadmium (1:1))

Silicate(2-),hexafluoro-, cadmium (1:1) structure
17010-21-8 structure
Product Name:Silicate(2-),hexafluoro-, cadmium (1:1)
CAS No:17010-21-8
MF:CdF6H8Si
MW:262.550445556641
CID:181931
PubChem ID:197153
Update Time:2025-10-28

Silicate(2-),hexafluoro-, cadmium (1:1) Chemical and Physical Properties

Names and Identifiers

    • Silicate(2-),hexafluoro-, cadmium (1:1)
    • CADMIUM FLUOSILICATE
    • Cadmium silicofluoride
    • cadmium(2+),silicon(4+),hexafluoride
    • CADMIUM FLUCSILICATE
    • Cadmium fluorosilicate
    • Cadmium hexafluorosilicate
    • Cadmium hexafluorosilicate(2-)
    • Cadmium silicon fluoride
    • Cadmiumfluorosilicat
    • EINECS 241-084-0
    • Silicate(2-),hexafluoro-,cadmium (8CI,9CI)
    • TL 1070
    • silicon(4+)
    • hexafluoride
    • cadmiumhexafluorosilicate(2-) cadmium fluorosilica
    • 17010-21-8
    • cadmium(2+);silicon(4+);hexafluoride
    • Silicate(2-), hexafluoro-, cadmium
    • pyrante
    • cadmiumfluorosilicate
    • cadmiumsiliconfluoride
    • cadmiumhexafluorosilicate
    • hexafluoro-silicate(2-cadmium
    • Inchi: 1S/Cd.6FH.H8Si/h;6*1H;1H8/q+2;;;;;;;+4/p-6
    • InChI Key: DXAKWRZWIWBPEV-UHFFFAOYSA-H
    • SMILES: [Cd+2].[SiH8+4].[F-].[F-].[F-].[F-].[F-].[F-]

Computed Properties

  • Exact Mass: 255.87100
  • Monoisotopic Mass: 255.871
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 0
  • Hydrogen Bond Acceptor Count: 6
  • Heavy Atom Count: 8
  • Rotatable Bond Count: 0
  • Complexity: 0
  • Covalently-Bonded Unit Count: 8
  • Defined Atom Stereocenter Count: 0
  • Undefined Atom Stereocenter Count : 0
  • Defined Bond Stereocenter Count: 0
  • Undefined Bond Stereocenter Count: 0
  • Topological Polar Surface Area: 0A^2

Experimental Properties

  • Boiling Point: 19.5°C at 760 mmHg
  • PSA: 0.00000
  • LogP: 2.13790

Silicate(2-),hexafluoro-, cadmium (1:1) Security Information

  • Hazardous Material transportation number:UN 3288
  • Hazard Category Code: 23/25-33-68-50/53
  • Safety Instruction: S22
  • Hazardous Material Identification: T N
  • HazardClass:6.1(b)
  • PackingGroup:III
  • Safety Term:6.1(b)
  • Packing Group:III
  • Risk Phrases:R23/25
  • Packing Group:III
  • Hazard Level:6.1(b)
  • Storage Condition:The warehouse is ventilated and dried at low temperature and stored separately from food raw materials

Silicate(2-),hexafluoro-, cadmium (1:1) Pricemore >>

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Additional information on Silicate(2-),hexafluoro-, cadmium (1:1)

Silicate(2-), hexafluoro-, cadmium (1:1) (CAS No. 17010-21-8): An Overview

Silicate(2-), hexafluoro-, cadmium (1:1) (CAS No. 17010-21-8) is a unique inorganic compound that has garnered significant attention in the fields of materials science and chemical engineering due to its distinctive properties and potential applications. This compound, also known as cadmium hexafluorosilicate, is a coordination complex where cadmium ions are coordinated with hexafluorosilicate anions. The compound's structure and properties make it a valuable material for various advanced applications, including catalysis, electronics, and environmental remediation.

The chemical formula of Silicate(2-), hexafluoro-, cadmium (1:1) is CdSiF6. It is a white crystalline solid that is insoluble in water but soluble in acids. The compound's high stability and unique electronic structure contribute to its versatility in various scientific and industrial processes. Recent research has focused on understanding the fundamental properties of this compound and exploring its potential in novel applications.

In the field of catalysis, cadmium hexafluorosilicate has shown promise as a catalyst support material. Its high surface area and unique pore structure make it an excellent candidate for supporting metal nanoparticles, which can enhance catalytic activity and selectivity. Studies have demonstrated that CdSiF6-supported catalysts exhibit improved performance in hydrogenation reactions, oxidation processes, and other important chemical transformations.

Electronics is another area where Silicate(2-), hexafluoro-, cadmium (1:1) has found significant application. The compound's dielectric properties and low electrical conductivity make it suitable for use in insulating materials and electronic devices. Recent advancements in nanotechnology have enabled the synthesis of CdSiF6 nanoparticles, which can be integrated into thin films and coatings for enhanced device performance. These nanoparticles have been used in the development of high-performance capacitors, sensors, and other electronic components.

In the realm of environmental remediation, CdSiF6 has been explored for its ability to adsorb heavy metals from contaminated water sources. The compound's high affinity for metal ions makes it an effective adsorbent material for removing pollutants such as lead, mercury, and arsenic from water. Research has shown that CdSiF6-based adsorbents can achieve high removal efficiencies under various conditions, making them a promising solution for water treatment applications.

The synthesis of Silicate(2-), hexafluoro-, cadmium (1:1) typically involves the reaction of cadmium salts with hexafluorosilicic acid or its salts. Various methods have been developed to optimize the synthesis process, including hydrothermal synthesis, sol-gel methods, and precipitation techniques. These methods allow for precise control over the particle size, morphology, and crystallinity of the final product, which can significantly impact its performance in different applications.

The safety and environmental impact of CdSiF6 are important considerations in its use. While cadmium compounds can be toxic if mishandled, proper safety protocols and containment measures can minimize risks. Environmental studies have shown that CdSiF6 has low bioavailability and does not readily leach into the environment when used as an adsorbent or catalyst support material. This makes it a relatively safe option for industrial applications when appropriate precautions are taken.

In conclusion, Silicate(2-), hexafluoro-, cadmium (1:1) (CAS No. 17010-21-8) is a versatile inorganic compound with a wide range of potential applications in catalysis, electronics, and environmental remediation. Its unique properties and stability make it an attractive material for advanced scientific research and industrial processes. As research continues to uncover new uses for this compound, it is likely to play an increasingly important role in various fields of science and technology.

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