By David Mecerreyes
This booklet summarizes the newest wisdom within the technological know-how and know-how of ionic beverages and polymers in numerous parts. Ionic drinks (IL) are actively being investigated in polymer technological know-how and know-how for a couple of diverse functions. within the first a part of the booklet the authors current the actual houses of ionic beverages as speciality solvents. The state-of-the artwork within the use of ionic drinks in polymer synthesis and amendment reactions together with polymer recycling is printed. the second one half specializes in using ionic drinks as speciality ingredients akin to plasticizers or antistatic brokers. The 3rd half examines using ionic drinks within the layout of sensible polymers (usually referred to as polymeric ionic beverages (PIL) or poly(ionic liquids)). Many very important purposes in assorted medical and business components depend upon those polymers, like polymer electrolytes in electrochemical units, construction blocks in fabrics technology, nanocomposites, fuel membranes, cutting edge anion delicate fabrics, shrewdpermanent surfaces, and a numerous set diversity of rising functions in several fields similar to power, optoelectronics, analytical chemistry, biotechnology, nanomedicine or catalysis.
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Additional resources for Applications of Ionic Liquids in Polymer Science and Technology
Use of DESs in the Synthesis of Porous Carbon Materials . . . . . . . . . . . . . . . . . . . Application of Porous Carbon Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . As Electrodes in Supercapacitors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . As CO2 Adsorbents . . . . . . . . . . . . . . . .
6 nm. The restricted diffusion of N2 at 77 K through micropores of such small dimensions explains the negligible N2 uptake described above. In this work, we have also investigated the performance of these carbons for gas separation purposes. , N2, CO2, and CH4) at 900 mmHg and at temperatures near ambient conditions. 55 mmol/g (depending on the sample) for CH4 (Fig. 12). It is generally assumed that the CO2-uptake capacity is dictated by many factors such as surface area, pore functionality, and pore size, among the principal ones.
Greenland DJ (1963) Adsorption of polyvinyl alcohols by montmorillonite. J Colloid Sci 18:647–664 122. Gieseking JE (1939) The mechanism of cation exchange in the montmorillonite-beidellitenontronite type of clay minerals. Soil Sci 47:1–14 123. Hendricks SB (1941) Base exchange of the clay mineral montmorillonite for organic cations and its dependence upon adsorption due to van der Waals forces. J Phys Chem 45:65–81 124. Chigwada G, Wang D, Wilkie CA (2006) Polystyrene nanocomposites based on quinolinium and pyridinium surfactants.
Applications of Ionic Liquids in Polymer Science and Technology by David Mecerreyes