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| CAS No.: | 25151-00-2 | |
|---|---|---|
| Name: | butyltris[(1-oxododecyl)oxy]stannane | |
| Molecular Structure: | ||
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| Formula: | C40H78 O6 Sn | |
| Molecular Weight: | 767.81 | |
| Synonyms: | Stannane,butyltris(lauroyloxy)- (8CI); Stannane, butyltris[(1-oxododecyl)oxy]- (9CI);Lauric acid, butylstannylidyne deriv. (8CI); Butylstannane trilaurate; Butyltintrilaurate; Monobutyltin trilaurate; NSC 65496 | |
| Density: | g/cm3 | |
| Boiling Point: | 296.1°Cat760mmHg | |
| Flash Point: | 134.1°C | |
| Safety: | Poison by ingestion. See also TIN COMPOUNDS. When heated to decomposition it emits acrid smoke and irritating fumes. | |
Analytical Methods: | For occupational chemical analysis use NIOSH: Organotin Compounds 5504. |
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| PSA: | 78.90000 | |
| LogP: | 13.11770 | |
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IUPAC Name: [Butyl-di(dodecanoyloxy)stannyl] dodecanoate
Molecular Formula: C40H72O6Sn
Molecular Weight: 767.81
Boiling Point: 296.1°C at 760mmHg
Flash Point: 134.1°C
Freely Rotating Bonds: 39
Polar Surface Area: 78.9 Å2
Enthalpy of Vaporization: 100.12 kJ/mol
Vapour Pressure: 1.76E-18 mmHg at 25°C
The Cas Register Number of Butyltin trilaurate is 25151-00-2.The chemical synonyms of Butyltin trilaurate (CAS NO.25151-00-2) are Butylstannane trilaurate ; Butyltin trilaurate ; Butyltri(lauroyloxy)stannane ; Butyltris((1-oxododecyl)oxy)stannane ; Butyltris[(1-oxododecyl)oxy]stannane ; Monobutyltin trilaurate ; Stannane, butyltri(lauroyloxy)- .The molecular structure of Butyltin trilaurate (CAS NO.25151-00-2) is
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It can be used in organic synthesis.
| 1. | orl-mus LD50:325 mg/kg | GISAAA Gigiena i Sanitariya. 41 (5)(1976),10. |
Poison by ingestion. See also TIN COMPOUNDS. When heated to decomposition it emits acrid smoke and irritating fumes.
OSHA PEL: TWA 0.1 mg(Sn)/m3 (skin)
ACGIH TLV: TWA 0.1 mg(Sn)/m3; STEL 0.2 mg(Sn)/m3 (skin).
NIOSH REL: (Organotin Compounds) TWA 0.1 mg(Sn)/m3
For occupational chemical analysis use NIOSH: Organotin Compounds 5504.
Butyltin trilaurate (CAS NO.25151-00-2) is well known that organotin compositions, including organotin oxides, hydroxides, alkoxides and carboxylates are effective as catalysts in the manufacture of polyester resins and polyester-containing compositions.