3-tetradec-1-enyloxolane-2,5-dione | CAS No. 33806-58-5

3-tetradec-1-enyloxolane-2,5-dione

Basic Information

CAS Number

33806-58-5

Molecular Formula

C18H30O3

Molecular Weight

294.44 g/mol

AD

Basic Physical Properties

Melting Point

48.0 to 55.0 deg-C

CCCCCCCCCCCCC=CC1CC(=O)OC1=O

InChI

InChI=1S/C18H30O3/c1-2-3-4-5-6-7-8-9-10-11-12-13-14-16-15-17(19)21-18(16)20/h13-14,16H,2-12,15H2,1H3

InChIKey

URVNZJUYUMEJFZ-UHFFFAOYSA-N

LogP

4.943300000000004

Topological Polar Surface Area

43.370000000000005 Ų

Hydrogen Bond Donor/Acceptor

0 / 3

Complexity

333

Safety Information

View Safety Information

Hazard Statement

H315 Causes skin irritation
Skin corrosion/irritation
H319 Causes serious eye irritation
Serious eye damage/eye irritation

Synonyms & References

English

  • TETRADECENYLSUCCINICANHYDRIDE
  • 2,5-Furandione, dihydro-3-(1-tetradecenyl)-
  • URVNZJUYUMEJFZ-UHFFFAOYSA-N
  • Tetradecenylsuccinic anhydride
  • 3-(tetradec-1-en-1-yl)oxolane-2,5-dione
  • AKOS028108226
  • Tetradecenyl succinic anhydride
  • 33806-58-5
  • NS00059565
  • 3-tetradec-1-enyloxolane-2,5-dione
  • 76386-10-2
  • dihydro-3-(tetradecenyl)-2,5-Furandione
  • N-TETRADECENYLSUCCINIC ANHYDRIDE
  • 1-Tetradecenylsuccinicanhydride
  • TDSA
  • Dihydro-3-(tetradecenyl)furan-2,5-dione
  • dihydro-3-(tetradecenyl)-5-furandione

MDL Number

MFCD00014543

FAQ

What regulatory guidelines apply to 3-tetradec-1-enyloxolane-2,5-dione (CAS: 33806-58-5)?

3-tetradec-1-enyloxolane-2,5-dione (CAS: 33806-58-5) is subject to various regulatory guidelines, including GHS classification, REACH regulations, and FDA/EPA requirements. GHS classifies this compound based on its potential health and environmental hazards, while REACH regulations focus on the safety and risk management of chemicals across the European Union. FDA and EPA guidelines ensure safety in food and environmental applications, respectively.

Are there alternatives to 3-tetradec-1-enyloxolane-2,5-dione in synthesis?

Yes, there are alternatives to 3-tetradec-1-enyloxolane-2,5-dione in synthesis. Common alternatives include similar cyclic ketones and alcohols that can serve similar functional roles. These alternatives can be substituted based on the specific needs of the synthesis, such as reactivity, solubility, and cost. For example, 1,5-diketones and cyclic ethers are often used as substitutes in various organic reactions.

What is the market or research trend for 3-tetradec-1-enyloxolane-2,5-dione?

The market for 3-tetradec-1-enyloxolane-2,5-dione (CAS: 33806-58-5) is growing due to its use in specialized applications such as pharmaceuticals and polymer synthesis. Research trends are focused on exploring its potential in new materials and drug delivery systems. Market demand is expected to increase as these applications continue to expand, driven by advances in technology and increasing demand in the pharmaceutical industry.

How should waste containing 3-tetradec-1-enyloxolane-2,5-dione be handled?

Waste containing 3-tetradec-1-enyloxolane-2,5-dione (CAS: 33806-58-5) should be collected in appropriate containers and stored away from incompatible materials. Proper disposal methods include incineration or professional waste disposal services that adhere to environmental protection regulations. Measures should be taken to prevent environmental contamination, and always follow local, state, and federal guidelines for hazardous waste management.

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