trans-β-farnesene

Basic information

  • Product Name:trans-β-farnesene
  • CAS No.:18794-84-8
  • EINECS No.:242-582-0
  • MF:C15H24

Product Specifications

  • Appearance:colorless or light-yellow transparent liquid
  • Specification:98.5%
  • Package:1/5/10/25kgs/drum
  • Supply Capacity:KGS
  • UN number:-
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Product Details

CAS No:18794-84-8

MF:C15H24

Appearance:colorless or light-yellow transparent liquid

Specification:98.5%

UN number:-

Package:1/5/10/25kgs/drum

Supply Capacity:KGS

Synonyms:7,11-dimethyl-3-methylene-(e)-10-dodecatriene;7,11-Dimethyl-3-methylene-1,6,10-dodecatriene;beta-farnesene (E);beta-trans-Farnesene;Farnesene (E, beta);t-.beta.-farnesene;(E)-7,11-dimethyl-3-methylenedodeca-1,6,10-triene;β-farnesene,(E)-7,11-dimethyl-3-methylene-1,6,10-dodecatriene,(E)-β-farnesene; 18794-84-8; trans-beta-Farnesene; BETA-FARNESENE; (6E)-7,11-dimethyl-3-methylidenedodeca-1,6,10-triene; e-beta-farnesene; (6E)-7,11-Dimethyl-3-methylene-1,6,10-dodecatriene; DTXSID9047049; E5STW643HU; DTXCID7027049; CHEBI:10418; CHEBI:39241; RefChem:567827; (6Z)-7,11-dimethyl-3-methylidenedodeca-1,6,10-triene; (E)-beta-farnesene; (E)-|A-Farnesene; (E)-7,11-Dimethyl-3-methylenedodeca-1,6,10-triene; trans-B-farnesene; beta-trans-farnesene; 7,11-Dimethyl-3-methylenedodeca-1,6,10-triene; 1,6,10-Dodecatriene, 7,11-dimethyl-3-methylene-, (6E)-; UNII-E5STW643HU; .beta.-Farnesene; EINECS 278-628-1; MFCD00065433; 1,6,10-Dodecatriene, 7,11-dimethyl-3-methylene-, (E)-; (6E)-beta-farnesene; trans-7,11-Dimethyl-3-methylene-1,6,10-dodecatriene; EINECS 242-582-0; (Z,E)-.beta.-Farnesene; HY-N7364; Tox21_303792; NCGC00357080-01; (E)-.beta.-Farnesene; CS-0113875; 7,11-Dimethyl-3-methylene-1,6E,10-dodecatriene; b-farnesene; (6E)-7,11-dimethyl-3-methylene-dodeca-1,6,10-triene; trans-|A-Farnesene; (6E)-7,11-Dimethyl-3-methylene-1,6,10-dodecatriene; ss-Farnesene; trans--Farnesene; b-trans-Farnesene; (e)-b-Farnesene; I(2)-farnesene; trans-beta-fernesene; trans-|?-Farnesene; (E)-|?-Farnesene; (E)-(beta)-farnesene; A1ETG; EC 242-582-0; FARNESENE, .BETA.-; SCHEMBL83306; (E)-7,11-Dime; FARNESENE, TRANS-BETA-; orb1680037; QSPL 026; (E)-|A-Farnesene (Standard); .BETA.-FARNESENE [MI]; FEMA NO. 4971; HY-N7364R; JSNRRGGBADWTMC-UHFFFAOYSA-N; .BETA.-FARNESENE, (6E)-; LMFA11000040; TN6835; AKOS015913412; EBC-616485; trans-beta-Farnesene, analytical standard; BS-53181; FD139229; SY312181; CAS-18794-84-8; FEMA NO. 3839, (6E)-.BETA.-; C09666; 1,6,10-dodecatriene, 7,11-dimethyl-3-methylene; 1,6,10-dodecatrine,7,11-dimethyl-3-methylene-; F865837; 1,6,10-Dodecatriene, 7,11-dimethyl-3-methylene-; Q27108631; (6E)-7,11-dimethyl-3-methylenedodeca-1,6,10-triene; (E)-7,11-dimethyl-3-methylene-dodeca-1,6,10-triene; (6E)-7,11-dimethyl-3-methylene-1,6,10-dodecatriene [M+H]+; (E)-7,11-DIMETHYL-3-METHYLENE-1,6,10-DODECATRIENE; TRANS-.BETA.-FARNESENE (CONSTITUENT OF CHAMOMILE) [DSC]


Product application:trans-β-farnesene,18794-84-8,trans-beta-farnesene,(E)-beta-farnesene,trans-beta-farnesene 98%,Bio-based squalane precursor,Aphid alarm pheromone,Acyclic sesquiterpene hydrocarbon,Fragrance and flavor ingredient,Green bio-pesticide,Synthetic biology fermentation terpene,Polyfarnesene rubber monomer,Renewable lubricant synthon,Low peroxide value farnesene,Natural sesquiterpene building block,CAS 18794-84-8 supplier,trans-β-farnesene manufacturer China,Suzhou Health Chemicals bio-derived chemicals,trans-beta-farnesene wholesale bulk export

 

trans-β-farnesene is widely utilized across industrial-scale commercial bio-squalane hydrogenated manufacturing, sustainable biorational agricultural pest behavior management, green semiochemical agrochemical formulation, fine luxury perfumery and fragrance compounding, advanced bio-derived polymer and elastomeric engineering, and specialty low-viscosity synthetic lubricant base-oil development sectors. In modern industrial biotechnology and sustainable cosmetic chemistry, universally recognized across synthetic biology and terpene research as (E)-beta-farnesene or trans-beta-farnesene, it functions as the quintessential acyclic sesquiterpene precursor for manufacturing commercial plant-derived squalane; through selective heterogeneous catalytic hydrogenation, its four conjugated and non-conjugated carbon-carbon double bonds undergo complete saturation to yield high-purity squalane, eliminating historical reliance on deep-sea shark liver harvesting and inefficient olive extraction routes; because of its regular stereochemical linear geometry, the resulting cosmetic squalane exhibits remarkable sensory spreadability, zero comedogenicity, and chemical stability within luxury restorative anti-aging creams and serums; in chemical ecology and integrated pest management (IPM), the molecule represents the primary natural aphid alarm pheromone secreted by aphids upon predatory attack; application of synthesized trans-β-farnesene in agricultural fields triggers immediate repellent dispersal behavior, feeding deterrence, and disrupted viral transmission pathways among aphid populations without environmental residue hazards; furthermore, in macromolecular materials engineering, trans-β-farnesene functions as a renewable polyene monomer for anionic polymerization to assemble low glass transition temperature polyfarnesene rubbers and specialty hydrocarbon fluids delivering thermal endurance and dynamic performance across diverse industrial operations.