(6Z,10E,14E,18E)-2,6,10,15,19,23-Hexamethyl-2,6,10,14,18,22-tetracosahexaene | CAS No. 7683-64-9

(6Z,10E,14E,18E)-2,6,10,15,19,23-Hexamethyl-2,6,10,14,18,22-tetracosahexaene

Basic Information

CAS Number

7683-64-9

Molecular Formula

C30H50

Molecular Weight

410.73 g/mol

AD

Basic Physical Properties

Melting Point

−75 °C

Boiling Point

285 °C25 mm Hg

Density

0.858 g/mL at 25 °C

Flash Point

>230 °F

Refractive Index

n20/D 1.494(lit.)

CC(=CCCC(=CCCC(=CCCC=C(C)CCC=C(C)CCC=C(C)C)C)C)C

InChI

InChI=1S/C30H50/c1-25(2)15-11-19-29(7)23-13-21-27(5)17-9-10-18-28(6)22-14-24-30(8)20-12-16-26(3)4/h15-18,23-24H,9-14,19-22H2,1-8H3/b27-17+,28-18+,29-23-,30-24+

InChIKey

YYGNTYWPHWGJRM-FLHYQJCXSA-N

LogP

10.604999999999992

Topological Polar Surface Area

0.0 Ų

Hydrogen Bond Donor/Acceptor

0 / 0

Complexity

578

Safety Information

View Safety Information

Hazard Statement

H317 May cause an allergic skin reaction
Sensitization, Skin
H319 Causes serious eye irritation
Serious eye damage/eye irritation

Synonyms & References

English

  • Spinacen
  • DTXSID4064767
  • All-trans-Squalene
  • trans-Squalene
  • AS-56045
  • CAS-111-02-4
  • MF59 COMPONENT SQUALENE
  • SQUALENE [INCI]
  • starbld0009755
  • 2,6,10,14,18,22-tetracosahexaene, 2,6,10,15,19,23-hexamethyl-, (6E,10E,14E,18E)-
  • CCRIS 711
  • 3704365A-1DAB-4AAA-A0D0-CAE7A96723AC
  • NSC-93748
  • 7683-64-9
  • HY-N1214
  • SQUALENE [WHO-DD]
  • 2,6,10,14,18,22-Tetracosahexene, 2,6,10,15,19,23-hexamethyl-,(all-E)-
  • NCGC00181323-01
  • (E)-Squalene
  • (6E,10E,14E,18E)-2,6,10,15,19,23-hexamethyltetracosa-2,6,10,14,18,22-hexaene
  • AKOS015917344
  • s4862
  • Super Squalene; trans-Squalene;AddaVax
  • 2,6,10,15,19,23-Hexamethyl-2,6,10,14,18,22-tetra cosahexaene
  • Squalen
  • 7QWM220FJH
  • (2E,6E,10E,14E,18E)-2,6,10,15,19,23-Hexamethyl-2,6,10,14,18,22-tetracosahexaene
  • DTXCID8047921
  • AddaVax
  • SQUALENE [MI]
  • 2,6,10,15,19,23-Hexamethyl-2,6,10,14,18,22-tetracosahexaene

MDL Number

MFCD00008912

Customs Code

2901299090

FAQ

What are the physical and chemical properties of (6Z,10E,14E,18E)-2,6,10,15,19,23-Hexamethyl-2,6,10,14,18,22-tetracosahexaene (CAS: 7683-64-9)?

(6Z,10E,14E,18E)-2,6,10,15,19,23-Hexamethyl-2,6,10,14,18,22-tetracosahexaene is a solid at room temperature with a crystalline form. It has a high molecular weight, approximately 690 g/mol. This compound is poorly soluble in water but soluble in organic solvents like hexane and toluene. Chemically, it is relatively stable but can react with strong oxidizing agents. Its reactivity is influenced by the presence of methyl groups, which can affect its reaction profile.

How is (6Z,10E,14E,18E)-2,6,10,15,19,23-Hexamethyl-2,6,10,14,18,22-tetracosahexaene (CAS: 7683-64-9) typically synthesized?

(6Z,10E,14E,18E)-2,6,10,15,19,23-Hexamethyl-2,6,10,14,18,22-tetracosahexaene can be synthesized through a series of Wittig reactions and selective alkylation steps. Catalysts such as triphenylphosphine and organometallic reagents are used to achieve high yield and selectivity. The synthesis involves multiple steps, each requiring precise control over temperature and reagent proportions to ensure purity and high yield.

What industries use (6Z,10E,14E,18E)-2,6,10,15,19,23-Hexamethyl-2,6,10,14,18,22-tetracosahexaene (CAS: 7683-64-9)?

(6Z,10E,14E,18E)-2,6,10,15,19,23-Hexamethyl-2,6,10,14,18,22-tetracosahexaene is used in various industries. In pharmaceuticals, it serves as a precursor for synthesizing bioactive molecules. In polymer research, it can be used as a monomer for developing novel materials. Additionally, it has applications in sensor technology and semiconductor manufacturing, where its unique molecular structure provides specific functionalities.

What precautions should be taken when handling (6Z,10E,14E,18E)-2,6,10,15,19,23-Hexamethyl-2,6,10,14,18,22-tetracosahexaene (CAS: 7683-64-9)?

When handling (6Z,10E,14E,18E)-2,6,10,15,19,23-Hexamethyl-2,6,10,14,18,22-tetracosahexaene, it is essential to wear appropriate personal protective equipment (PPE) such as gloves and safety goggles. Work should be conducted in a well-ventilated area or fume hood. Spills should be cleaned up with appropriate absorbent materials and disposed of according to local regulations. Always refer to the Safety Data Sheet (SDS) for detailed handling and disposal instructions to ensure safety in the laboratory setting.

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