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Dodecyl hexaethylene glycol

Figure 4. Dependence of extrapolated dilational modulus, e0, on surface pressure 7r for dodecyl triethylene glycol (M and ) for dodecyl hexaethylene glycol ( and O). Dashed line 7rA = RT. Drawn line predicted curve for RT In f/ = 1.77 02 - 8.96 63 + 9.48 04. 0 = r/r°° RTr°° = 10.5 mNm1. Abscissa surface pressure, mNm1. Ordinate e0, mNm1. Figure 4. Dependence of extrapolated dilational modulus, e0, on surface pressure 7r for dodecyl triethylene glycol (M and ) for dodecyl hexaethylene glycol ( and O). Dashed line 7rA = RT. Drawn line predicted curve for RT In f/ = 1.77 02 - 8.96 63 + 9.48 04. 0 = r/r°° RTr°° = 10.5 mNm1. Abscissa surface pressure, mNm1. Ordinate e0, mNm1.
Figure 8. Surface pressure vs. log concentration curve for dodecyl hexaethylene glycol. Drawn line predicted curve with parameters given for Figure 4 and with a =... Figure 8. Surface pressure vs. log concentration curve for dodecyl hexaethylene glycol. Drawn line predicted curve with parameters given for Figure 4 and with a =...
Fig. 5.2. y vs log c plot for n-dodecyl hexaethylene glycol monoether in water... [Pg.241]

Figure 2.18 The pair potential calculated for polystyrene particles of radius 500 nm, with a measured (.-potential of —12mV in 0.5moldm 3 electrolyte. A steric barrier of S = 3.5 nm was used as the particles had monolayer coverage of a monodisperse non-ionic surfactant. This was C 2E06 which represents a dodecyl hydrophobic moiety linked to hexaethylene glycol via an ether link... Figure 2.18 The pair potential calculated for polystyrene particles of radius 500 nm, with a measured (.-potential of —12mV in 0.5moldm 3 electrolyte. A steric barrier of S = 3.5 nm was used as the particles had monolayer coverage of a monodisperse non-ionic surfactant. This was C 2E06 which represents a dodecyl hydrophobic moiety linked to hexaethylene glycol via an ether link...
AOT, Aerosol OT NP-6, polyoxyelhylene(6) nonylplieuyl ether DP-fi, hexaethylene glycol dodecyl ether. [Pg.304]

ForCaCO, particles in W/O microemulsions of hexaethylene glycol dodecyl ether, however, the values of Nm/Np lie between 0.044 and 0.28, indicating that the particles form by the destruction of micelle-solubilizing aqueous Ca(OH)2 rather than by the intermicellar exchange process (5). In the case of the formation of CaCO-) particles in the Ca salt of Aerosol OT-cyclohexane system, as seen in Table 7.2.2, the particles... [Pg.397]

One of the best-investigated groups of nonionic surfactants are the oligo ethylene glycol mono-n-alkyl ethers (see e.g., [38, 95]). Calorimetry-based examinations of the interaction of one of these surfactants (hexaethylene glycol mono-n-dodecyl ether C Eg) with the Pluronic F127 (PEO97PPO69PEO97) and L64... [Pg.11]

Conderc et al. (2001) carried out an investigation of the interactions of different binary systems consisting of nonionic surfactant, hexaethylene glycol mono-n-dodecyl ether (C,2E06), and triblock copolymer Pluronic F127 of chanical composition EO97PO69EO97. This copolymer is nonionic in which EO represents the ethylene oxide blocks and PO the propylene oxide blocks. [Pg.672]

Couderc, S., Y. Li, D. Bloor, J. Holzwarth, and E. Wyn-Jones (2001). Interaction between the nonionic surfactant hexaethylene glycol mono-n-dodecyl ether (Cj2EOg) and the surface active nonionic ABA block copolymer pluronic F127 (EO POg EO ) formation of mixed micelles studied using isothermal titration calorimetry and differential scanning calorimetry. Langmuir 17(16) 4818-4824. [Pg.678]


See other pages where Dodecyl hexaethylene glycol is mentioned: [Pg.240]    [Pg.241]    [Pg.249]    [Pg.240]    [Pg.241]    [Pg.249]    [Pg.711]    [Pg.303]    [Pg.398]    [Pg.399]    [Pg.399]    [Pg.400]    [Pg.445]    [Pg.671]    [Pg.1020]    [Pg.13]    [Pg.162]   


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