Table 1 phyicochemical properties of obtained RTMSs BJungle得到的rtmss bjungle理化性质表1.pptVIP

Table 1 phyicochemical properties of obtained RTMSs BJungle得到的rtmss bjungle理化性质表1.ppt

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Table 1 phyicochemical properties of obtained RTMSs BJungle得到的rtmss bjungle理化性质表1

Fig. 1. Schematic representation of potential profile across the RTMS|W interface with and without specific adsorption. DFRTMSW was defined on the basis of FRTMS and z potential was defined on the basis of Fw. Fig. 2. Structure of tetrahexylammonium1,4- bis(2-ethylhexyl) sulfosuccinate. Fig. 3. Electrochemical cell for cyclic voltammogrammetry at the RTMS|W interfaces. Fig. 4. Electrochemical cell for potentiometry at the RTMS|W interfaces. Fig. 5. SAXS spectra for. dry RTMSs(red) and water-saturated RTMSs(Blue) Fig. 6. Cyclic voltammograms at the RTMS|W interfaces. Scan rate: 20 mV s-1. Wref. contains 1 mM NaBEHSS, 10mM KCl. Fig. 7. Cyclic voltammograms at the N5555BEHSS|W interface. W contains x mM LiCl. Wref contains 100 mM NaCl, 1 mM N5555Cl. Fig. 8. Plots of E of cell 1 against the time. Wref. contains 1 mM N7777Cl and 9 mM KCl. W contains x mM N7777Cl and 10-x mM KCl. Fig. 9. Plots of E against the concentration of common ion in the W phase. Ionic Strength was 10 mM for n=6,7, 100 mM for n=5. W2 contains 10 mM N5555Cl for n=5, 1 mM NnnnnCl for n=6,7. Fig. 10. Plots of E of cell 1 against the time. Wref. contains 1 mM N6666Cl. a ) W contains x mM N6666Cl and 1-x mM KCl. b) W contains x mM NaBEHSS and 1-x mM KCl. Fig. 11. Plots of E of cell 1 against the time. Wref. contains 1 mM N6666Cl and 9 mM KCl. a ) W contains x mM N6666Cl and 10-x mM KCl. b) W contains x mM NaBEHSS and 10-x mM KCl. Fig. 12. Plots of E against the concentration of common ion in the W phase. ●, ○ represents results with 1 mM ionic strength. ▲, △ represents results with 10 mM ionid strength. Fig. 13. Size distribution of o/w type RTMS emulsion of N7777BEHSS. Fig. 14. Dependence of z of O/W type NnnnnBEHSS emulsions on the concentration of the common ions in water. NaCl was added to the water phase to maintain ionic strength to 100 mM. Fig. 15. Plots of z potential of the O/W type N6666BEHSS emultion against the concentration of co-ions in the W phase. ○ (1st), □ (2nd): W with ionic stren

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