$l^{2}-stannane; octadecanoate | CAS No. 6994-59-8

$l^{2}-stannane; octadecanoate

Basic Information

CAS Number

6994-59-8

Molecular Formula

C36H72O4Sn

Molecular Weight

687.68 g/mol

AD

Basic Physical Properties

Melting Point

Not available

Boiling Point

359.4°C at 760 mmHg

Water Solubility

Insoluble in water.

Flash Point

162.4°C

Vapor Pressure

No data available

CCCCCCCCCCCCCCCCCC(=O)[O-].CCCCCCCCCCCCCCCCCC(=O)[O-].[Sn+2]

InChI

InChI=1S/2C18H36O2.Sn.2H/c2*1-2-3-4-5-6-7-8-9-10-11-12-13-14-15-16-17-18(19)20;;;/h2*2-17H2,1H3,(H,19,20);;;/p-2

InChIKey

UEAIAIUOGAWFCW-UHFFFAOYSA-L

LogP

9.0794

Topological Polar Surface Area

80.25999999999999 Ų

Hydrogen Bond Donor/Acceptor

0 / 4

Complexity

196

Safety Information

View Safety Information

Hazard Statement

Hazard Class

Class 6.1 Class 6.1

Synonyms & References

English

  • SCHEMBL48881
  • DTXSID60220222
  • STANNOUS STEARATE
  • HY-W127563
  • SCHEMBL48880
  • NS00080952
  • Tin(II) stearate
  • CS-0185785
  • octadecanoate;tin(2+)
  • 6994-59-8
  • Tin distearate, pure
  • EINECS 230-266-5
  • stannous stearate
  • tin distearate, pure
  • AC1MC1S8
  • ACMC-1BH23
  • CTK3J3323
  • tin, ion (sn2+) bis(formula 300)
  • Stannous octadecanoate

MDL Number

MFCD00050720

FAQ

What regulatory guidelines apply to $l^{2}-stannane; octadecanoate (CAS: 6994-59-8)?

Regulatory guidelines for $l^{2}-stannane; octadecanoate (CAS: 6994-59-8) include GHS classification, which categorizes it based on its physical and health hazards. Under REACH regulations, manufacturers and importers must register the substance if it is manufactured or imported in quantities exceeding one tonne annually. The FDA and EPA have requirements for the handling, storage, and disposal of this compound, particularly regarding its potential environmental and health impacts. Compliance with these regulations is crucial for safe handling and use.

Are there alternatives to $l^{2}-stannane; octadecanoate (CAS: 6994-59-8) in synthesis?

There are several alternatives to $l^{2}-stannane; octadecanoate (CAS: 6994-59-8) in synthesis, such as other stannylating agents like stannanes and stannyl ethers. These alternatives offer varying properties and can be used depending on the specific reaction conditions and desired outcomes. Common substitutes include $l^{2}-stannane; hexadecanoate and stannic chloride, which can be used as effective equivalents in many synthetic scenarios.

What is the market or research trend for $l^{2}-stannane; octadecanoate (CAS: 6994-59-8)?

The market for $l^{2}-stannane; octadecanoate (CAS: 6994-59-8) is growing due to its applications in pharmaceuticals, materials science, and as a reagent in organic synthesis. Recent research trends focus on its use in polymer synthesis and as a protective group in organic transformations. The compound's unique properties make it a valuable tool in advanced chemical research, driving demand in emerging fields such as nanotechnology and biotechnology.

How should waste containing $l^{2}-stannane; octadecanoate (CAS: 6994-59-8) be handled?

Waste containing $l^{2}-stannane; octadecanoate (CAS: 6994-59-8) should be handled according to local and international waste disposal regulations. Collection of waste should be done in a manner that minimizes environmental impact, typically using proper containment and labeling. Incineration is a common method for waste disposal, but professional waste disposal services are recommended, especially for larger quantities. Environmental protection precautions include ensuring no spillage and proper ventilation during handling to prevent exposure to toxic fumes and to protect the environment.

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