In(OH)(3) and In(2)O(3) nano-structures have been synthesized from the reaction of In(CH(3)COO)(3) and sodium hydroxide by a sonochemical method. The effects of reaction conditions, such as the concentration of the In(3+) ion, aging time and power of the ultrasonic device have been investigated. The In(2)O(3) and In(OH)(3) nano-structures were characterized by scanning electron microscopy (SEM), X-ray powder diffraction (XRD), Thermal Gravimetric Analysis (TGA), Differential Thermal Analysis (DTA) and Energy-dispersive X-ray analysis (EDAX) technique.
Four new thallium(I) coordination polymers, [TlBt](n) (1) (Hbt = 5-phenyltetrazole), [TlBbt] (2) (Hbbt = 5-(4-bromobenzyl)tetrazole), [Tl(2)Bdt](n) (3) (H(2)bdt = 5,5'-benzene-1,4-diylbistetrazole), [Tl(2)Pht·H(2)O](n) and [TlBet] (4), (Hbet = 5-(benzyl)tetrazole) have been synthesized and characterized. The single-crystal X-ray data shows that, in compounds 1-3, the coordination sphere of the Tl(I) ion is the same and it is surrounded with six tetrazolate rings. In compound 4, one thallium atom has three interactions with tetrazolate groups and close Tl(I)···π (aromatic) contacts with the phenyl ring. Furthermore, in all cases the single-crystal X-ray data show the same stereo-chemical activity of the valence shell electron lone pair of Tl(I). There is a strong Tl(I)···Tl(I) interaction in one dimension in compounds 1 and 3. All these four compounds have been used as new precursors for the preparation of thallium(III) oxide nano-particles through a simple calcination method. Thallium(III) oxide was characterized by powder XRD diffraction and the morphology of nano particles characterized by scanning electron microscope (SEM).
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