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3-Ethyl-3-pentanol was used to study the effect of alkanols on the micropolarity and microviscosity of the head group region, in the reverse micelles of AOT-heptane-water by fluorescence probing. 3-Ethyl-3-pentanols were encapsulated in the hexamers of resorcin[4]arenes.
Journal of peptide science : an official publication of the European Peptide Society, 21(8), 680-687 (2015-06-17)
Obtaining homogenous aspartyl-containing peptides via Fmoc/tBu chemistry is often an insurmountable obstacle. A generic solution for this issue utilising an optimised side-chain protection strategy that minimises aspartimide formation would therefore be most desirable. To this end, we developed the following
Journal of colloid and interface science, 258(2), 363-366 (2003-03-06)
The effects of addition of alkanols (ethanol, n-hexanol, and 3-ethyl-3-pentanol) on the micropolarity and microviscosity of the head group region in reverse micelles of AOT-heptane-water have been investigated by fluorescence probing methods (ANS fluorescence yield and TMADPH fluorescence anisotropy), complemented
Chemistry (Weinheim an der Bergstrasse, Germany), 18(27), 8515-8520 (2012-05-29)
After more than a century of research on resorcin[4]arenes (1) it is clear that such systems form spontaneously [1(6)(H(2)O)(8)]-type hexameric capsules in wet, non-polar, organic solvents. However, the interactions of these hexameric capsules with alcohols are far from being solved.
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