Cumulative CAMAG Bibliography Service CCBS
Our CCBS database includes more than 11,000 abstracts of publications. Perform your own detailed search of TLC/HPTLC literature and find relevant information.
The Cumulative CAMAG Bibliography Service CCBS contains all abstracts of CBS issues beginning with CBS 51. The database is updated after the publication of every other CBS edition. Currently the Cumulative CAMAG Bibliography Service includes more than 11'000 abstracts of publications between 1983 and today. With the online version you can perform your own detailed TLC/HPTLC literature search:
- Full text search: Enter a keyword, e.g. an author's name, a substance, a technique, a reagent or a term and see all related publications
- Browse and search by CBS classification: Select one of the 38 CBS classification categories where you want to search by a keyword
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II. Study of n-propyl alcohol systems). (Chinese). J.Wuhan Univ. 1, 79-84 (1987) (Wuhan Daxue Xuebao). Investigation of the TLC behaviors of some metal ions on silica using 4 developing solvent systems containing n-propanol. The optimal systems for different ion combinations were given.
Fres. J. Anal. Chem. 336, 419-422 (1990). TLC of all lanthanoids except Pm in aqueous solutions of five alkali metal chlorides on silica. Visualization by spraying with 0.02% aqueous arsenazo(III) solution and 1 mol/L acetic acid. Examination of the effects of the solvent cations and the solvent anions on the Rf values. Discussion of effects of the salt concentrations on Rf values. For the separation of groups of adjacent lanthanoids typical chromatograms are presented.
Microchem. J. 39, 361-371 (1989). TLC separation of Hg(II) on silica impregnated with 2% oxalic acid with ethyl acetate - acetone - formic acid - water 8:7:4:1. Detection with standard reagents, derivatization.
J. Planar Chromatogr. 3, 157-159 (1990). Separation of cationic ion mixtures of Mo, Re, W, and V by chromatography on alumina layers with aqueous solutions of inorganic and organic acids. These were compared with the separation of same substances on same layers with same solutions under application of a voltage gradient. The relationship between Rf values and concentrations of acids in the mobile phase were investigated and conclusions drawn. Chromatograms and electropherograms were visualized with 20% SnCl2 solution in HCl 1:1 and aqueous solution of NH4SCN. Good method to separate mixtures and to obtain information on ionic forms of rare element ions in aqueous solutions.
J. Planar Chromatogr. 7, 166 (1994). TLC of copper sulfate on silica with methanol - acetic acid 100:0.3. Detection by spraying with alkaline 2-thiobarbituric acid solution. Detection limit of the reagent is ca 100 µg.
Planar Chromatogr. 8, 469-472 (1995). TLC of 49 inorganic ions on silica impregnated with tri-n-octylamine with aqueous sulfuric acid and sulfuric acid - ammonium sulfate solutions (0.01, 0.1, and 1.0 M ). Detection see T. Shimizu, N. Iwata, Y. Tamura, J. Planar Chromatogr. 7, 98-102 (1994).
J. Planar Chromatogr. 11, 127-131 (1998). TLC of solutions of Mn, Co, Ni, Cu, Zn, Y, Nd, Sm, Eu, Gd, Th, Dy,and Yb chlorosulfates on chicken-egg-shell powder or mixtures thereof with cellulose or silica gel with 31 different mobile phases. 1% aqueous solutions of potassium ferrocyanide were used for detection of Cu chlorosulfate, ethanolic dimethyl glyoxime for detection of Ni and Co chlorosulfates, a 0.5% solution of dithizone in chloroform for detection of Zn and Mn chlorosulfates, and aqueous arsenazo(III) solution for detection of all rare earth chlorosulfates.
J. Planar Chromatogr. 15, 367-369 (2002). TLC separation of Al(III), Cr(III), Cu(II), Fe(III), Mn(II), Ni(II), Pb(II), Sn(IV) and Zn(II) on cellulose with acetonitrile - HCl - water 73:15:12 in the x direction and 2-pentanol - acetonitrile - HCl 3:2:5 in the y direction. Visualization by spraying with quercetin (+ dimethylglyoxim + NH3 ) - the most suitable out of 12 reagents tested; prepared by dissolving 0.1 g quercetin in 100 mL 2-propanol and 1.0 g dimethylglyoxime in 100 mL ethanol by heating. Rapid, simple and inexpensive screening method.