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Der falsche Inder: Roman
Rasul, ein junger Iraker, den alle für einen Inder halten, berichtet über seine jahrelangen Versuche, nach Europa zu gelangen.
Ohrfeige: Roman
Ein Flüchtling betritt die Ausländerbehörde, um ein letztes Mal seine zuständige Sachbearbeiterin aufzusuchen. Er ist wütend und hat nur einen Wunsch: dass ihm endlich jemand zuhört. Als Karim drei Jahre zuvor von der Ladefläche eines Transporters ins Freie springt, glaubt er in Frankreich zu sein. Bis dorthin hat er für seine Flucht aus dem Irak bezahlt. In Wahrheit ist er mitten in der bayerischen Provinz gelandet. – Er kämpft sich durch Formulare und Asylunterkünfte bis er plötzlich seinen Widerruf erhält und abgeschoben werden soll. Jetzt steht er wieder ganz am Anfang. Dieser ebenso abgründige wie warmherzige Roman wirft eine der zentralen Fragen unserer Gegenwart auf: Was bedeutet es für einen Menschen, wenn er weder in der Heimat noch in der Fremde leben darf?
Metal Complexes of Adenine Azo Ligand: Synthesis, Identification and Study some of their Applications
In: Iraqi journal of science, S. 1212-1229
ISSN: 0067-2904
This scientific paper presents two novel lanthanide metal complexes [Sm (III) and Ce (IV)] synthesized through a series of reactions involving organic ligand 8-[3-(pyrazoyl)azo]adenine (PAA). Ligand (PAA) and their complexes were characterized using various analytical techniques, including C.H.N.S elemental analysis, magnetic measurement, X-ray diffraction, thermal analysis, SEM, (TGA) UV-Vis spectroscopy, FT-IR spectroscopy, and HNMR analysis. These techniques were employed to support the mode of binding and geometrical structure for ligand (PAA) and its Lanthanide (Ln) complexes. The FTIR and HNMR spectral results showed that (PAA) acts as neutral N,N-bidentate with [Sm (III) and Ce (IV)]. The geometric shape of the synthesized Ln-complexes is octahedral. Also, TGA was used to investigate the thermal behavior of ligand and its complex. The results showed that the ligand dissociated in three steps, while the complex dissociated in five steps. This indicates that the complex is more thermally stable than the ligand, likely due to the formation of strong coordination bonds between the ligand and the metal ions. These findings can contribute to the understanding of the thermal stability of metal complexes and inform the design of new metal-based materials with desirable properties. Finally, this paper examined the antibacterial, antifungal and anticancer activities of PAA and its complexes. The results indicated that all of these compounds exhibited significant activity against bacterial and fungal pathogens, as well as cancer cells.
Synthesis and Structural Views on New Azo Ligand and Its Metal Complexes with Some of their Application
In: Iraqi journal of science, S. 6119-6134
ISSN: 0067-2904
In this work, we presented a study of the structural formula for a new series of complexes with Ag(I), Cu(II), Zn(II), and Cd(II) derived from the guanine azo dye ligand 2-amino-8-((3-hydroxyphenyl)diazinyl)-1,7-dihydro-6H-purin-6-one (HAG), which is investigated using various physicochemical analyses, spectroscopic techniques (FT-IR, U.V-VIS, and 1H NMR), thermogravimetric analysis (TGA). In addition, elemental analyses, magnetic susceptibility, and molar conductance measurements were all stabilized. As well as the mole ratio, stability constant, and Gibbs free energy were studied for all complexes, where they showed high stability and spontaneous synthesis. The Cu(II) complex was suggested to have octahedral stereochemistry, while the Ag(I), Zn(II), and Cd(II) complexes were suggested to have tetrahedral stereochemistry. The ligand has been demonstrated to be a useful acid-base indicator, and it has been shown that the ligand (HAG) and its complexes exhibit high photostability and have various colors that can be used to dye wool materials.
Novel Nano Zn+2-Compound from LA Ligand as an Acid-Base Indicator: Synthesis, Characterization, pH Sensor, and Fluorescent Study
In: Iraqi journal of science, S. 5525-5540
ISSN: 0067-2904
The main goal of our research is to synthesize novel nano Zn2+ complex with the 8-(2-(dansyl chloride)azo) adenine (LA) ligand as a pH sensor because of its advantageous properties, obtained from a single molecule. The Zn2⁺- LA complex was based on the production of an intensely dark purple-colored substance with λmax at 552 nm. Molar ratio of Zn2⁺- LA complex is a 1:2 in aqueous buffer. The optimum concentration (0.3) mM, pH (2-5.5), and time (0-3) hr at pH=5.5, that in the studies followed Lambert-law Beer'