By Sanjay Malhotra
content material: Ionic drinks as pharmaceutical salts: a ancient standpoint / Vineet Kumar and Sanjay Malhotra --
Ionic beverages: new possibilities for the chemistry of amino acids, peptides, and pharmaceutical compounds / James Ternois ... [et al.] --
Enzymatic membrane reactor for solution of ketoprofen in ionic beverages and supercritical carbon dioxide / Pedro Lozano ... [et al.] --
improvement of a common procedure in keeping with ionic drinks for choice of enantiomeric compositions of pharmaceutical items / Chieu D. Tran --
New approach for set up of the imidazole ring and synthesis of biologically lively molecules with ionic liquid-like constructions / Yuichi Kobayashi ... [et al.] --
Separation and restoration of penicillin in an built-in method containing ionic beverages / Yangyang Jiang ... [et al.] --
Antitumor job of ionic beverages on human tumor mobilephone strains / Vineet Kumar and Sanjay V. Malhotra --
education of ionic liquid-modified inorganic nanoparticles and their biomedical software / Asako Narita, Kensuke Naka, and Yoshiki Chujo --
instruction of biopolymer-based fabrics utilizing ionic drinks for the biomedical software / Sang Hyun Lee ... [et al.] --
Toxicological overview of ionic drinks / Raquel F.M. Frade ... [et al.] --
Formation of anhydrosugars from polysaccharides in ionic drinks via microwave irradiation / Hiroe Satoh ... [et al.] --
Chiral pyrrolidine-substituted ionic liquid-mediated activation of enzyme / Toshiyuki Itoh ... [et al.] --
Deep eutectic solvents for Candida antarctica lipase b-catalyzed reactions / Johnathan T. Gorke, Friedrich Srienc, and Romas J. Kazlauskas --
Enzyme catalysis in ionic drinks and supercritical carbon dioxide / Pedro Lozano ... [et al.] --
at the merge of fungal job with ionic drinks in the direction of the improvement of latest biotechnological strategies / M. Petkovic ... [et al.].
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Additional resources for Ionic Liquid Applications: Pharmaceuticals, Therapeutics, and Biotechnology
45. 46. 47. 48. 49. 50. 51. 52. 53. Tran, C. ; Kang, J. J. Chromatogr, A 2002, 978, 221–230.
Compton, D. ; Laszlo, J. A. J. Electroanal. Chem. 2002, 520, 71–78. Quinn, B. ; Bard, A. J. Langmuir 2002, 18, 1734–1742. Laszlo, J. ; Compton, D. L. Biotech. Bioeng. 2001, 75, 181–186. Chem. Eng. News, 1990, 68 (19), 38−44; 1992, 70 (28) 46−79; 2001, 79, 45−56, 79−97. Armstrong, D. ; Han, S. H. CRC Crit. Rev. Anal. Chem. 1988, 19, 175. Hinze, W. H. Sep. Purif. Methods 1981, 10, 159. Armstrong, D. W. Anal. Chem. 1987, 59, 84A. Hinze, W. ; Armstrong, D. W. Ordered Media in Chemical Separations; American Chemical Society: Washington, DC, 1987.
Specifically, the chiral IL with its high solubility power, should dissolve many different types of analytes. Its chirality may produce the needed diastereomeric interactions with both enantiomeric forms of an analyte. Unfortunately, in spite of their potentials, chiral ILs are not commercially available. Only a few chiral ILs have been synthesized, and the synthesis of reported chiral ILs required rather expensive reagents and elaborated synthetic schemes (28–43). Because of these limitations, in spite of extensive efforts made by various groups, to date, the study and applications of chiral ILs have been severely hindered.