Structure–activity relationships of sandalwood odorants: synthesis and odor of tricyclo β-santalol
摘要:
In a series of structure-odor relationship investigations the synthesis of a new tricyclic beta-santalol derivative is described. The product of a multistep synthesis appears in an olfactive evaluation more or less odorless, may be slightly creamy but definitely with no sandalwood odor. This modification with a bulky aliphatic bridge in the neighborhood of the quaternary C-3-atom demonstrated the sensitivity of sandalwood odor on the structure of beta-santalol analogues. (C) 2004 Elsevier SAS. All rights reserved.
Structure–activity relationships of sandalwood odorants: synthesis and odor of tricyclo β-santalol
摘要:
In a series of structure-odor relationship investigations the synthesis of a new tricyclic beta-santalol derivative is described. The product of a multistep synthesis appears in an olfactive evaluation more or less odorless, may be slightly creamy but definitely with no sandalwood odor. This modification with a bulky aliphatic bridge in the neighborhood of the quaternary C-3-atom demonstrated the sensitivity of sandalwood odor on the structure of beta-santalol analogues. (C) 2004 Elsevier SAS. All rights reserved.
An immersion oil for microscopy contains a) a first diester A1 based on a tricyclodecane radical K having one functional group and a first hydrocarbon derivative C1 having two functional groups, and b) a second diester A2 based on the tricyclodecane radical K having one functional group and a second hydrocarbon derivative C2 having two functional groups, where C1 and C2 are different. Methods can be used for the production of the immersion oil and for the use thereof in microscopy.