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The properties of the glymes were investigated by using a ternary mixed solvent consisting of n-glyme, ethylene carbonate (EC) and methylethylcarbonate (MEC).
After being cooled to room temperature, the porous films were sensitized by immersing them into a dye solution that contained 0.5 mM of cis-bis (isothiocyanato) bis- 2,2'-bipyridyl-4,4'-dicarboxylato -ruthenium II bis-tetrabutylammonium (Solaronix, N719) (Solaronix SA, Aubis- 2,2'-bipyridyl-4,4'-dicarboxylato -ruthenium II bis-tetrabutylammoniumtrile and tert-bis- 2,2'-bipyridyl-4,4'-dicarboxylato -ruthenium II bis-tetrabutylammonium
In order to prepare the AlF3 coating solution, aluminum nitrate nonahydrate (Al(NO3 39H2O; Sigma-Aldrich, St . Louis MO, USA) and ammonium fluoride [NH4F] (Sigma-Aldrich, St . Louis MO, USA) were dissolved in 10 ml of a mixed solvent consisting of distilled water, 1-butanol, and acetic acid.
To prepare the coating solution, aluminum nitrate nonahydrate (Al(NO3 39H2O; Sigma-Aldrich, St . Louis MO, USA) and ammonium dihydrogen phosphate ((NH4 H2PO4; Sigma-Aldrich, St . Louis MO, USA) were dissolved separately in 10 mL of a mixed solvent consisting of distilled water, 1-butanol, and acetic acid.
Slowing the aggregate speed of the molecules was carried out by slow evaporation of the main solvent (the mixed solvent, consisting of a good solvent chloroform (CF) as the main solvent and a marginal solvent 1,2-dichlorobenzene (ODCB) as the co-solvent).
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The most efficient mixed solvent consists of water, dimethyl formamide (DMF) and aniline in volume ratio of 20 10 1, and the delignified sample was analyzed to contain 0.87% lignin.
The shear-induced orientation of high molar mass polystyrene (Mw > 9 × 106 g mol−1) is investigated by means of rheooptical wide-angle laser light scattering in dilute solution at 20°C in the near-theta solvent trans-decalin and in thermodynamically good mixed solvents consisting of oligostyrene in toluene.
Previously, we have reported the fabrication of cellulose acetate butyrate (CAB) and PS fibers with a parallel line surface texture via electrospinning using a mixed solvent system consisting of a highly volatile solvent (e.g., acetone) and a nonvolatile organic solvent[15, 16].
From the above discussion, it is clear that single component mobile phase is not capable to resolve amino acids from their mixtures but from the differential migration of amino acids in individual mobile phase, it is expected that mixed solvent systems consisting of different proportions of components may prove useful for resolving amino acids from their multi-component mixtures.
It was followed by the addition of trimesic acid (benzene-1,3,5-tricarboxylic acid, 1.414 g (6.7 mmol)) to 24 mL of solvent consisting of equal parts of ethanol and deionized water and mixed thoroughly until it was completely dissolved.
Extraction solvent consisted of 65:15:20 MeOH IPA:Water + 5 mM ammonium acetate using LCMS quality solvents.
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