Solid-state compounds of general formula LnL(3)center dot nH(2)O, where Ln represents heavier lanthanides and yttrium and L is 2-chlorobenzylidenepyruvate, have been synthesized. Chemical analysis, simultaneous thermogravimetry-differential analysis (TG-DTA), differential scanning calorimetry (DSC), X-ray powder diffractometry, elemental analysis and infrared spectroscopy have been employed to characterize and to study the thermal behaviour of these compounds in dynamic air atmosphere.On heating these compounds decompose in four (Gd, Tb, Ho to Lu, Y) or five (Eu, Dy) steps. They lose the hydration water in the first step and the thermal decomposition of the anhydrous compounds up to 1200 degrees C occurs with the formation of the respective...
Solid state Ln(2)-L(3) compounds, where Ln stands for heavy trivalent lanthanides (terbium to luteti...
Solid-state LnL3·1.25H2O compounds, where L is oxamate and Ln is light trivalent lanthanides, have b...
Characterization, thermal stability and thermal decomposition of light trivalent lanthanide succinat...
Solid-state compounds of general formula LnL(3).2H(2)O, where Ln is heavier trivalent lanthanides an...
Solid-state compounds Ln-4Cl-BP, where Ln represents lighter trivalent lanthanides and 4Cl-BP is 4-c...
Solid-state compounds with a general formula of LnL3· nH2O, where Ln stands for lighter trivalent la...
Solid-state Ln-L compounds, where Ln stands for heavy trivalent lanthanides or yttrium(III) (Tb-Lu, ...
Thermal and spectroscopic studies on solid trivalent lanthanides and yttrium(III) α-hydroxyisobutyra...
Solid state Ln-4-Me-BP compounds, where Ln stands for heavier trivalent lanthanides (gadolinium to l...
Solid state Ln-CP compounds, where Ln represents trivalent lanthanides (except for promethium) and y...
Solid state Ln-2-MeO-CP compounds, where Ln stands for light trivalent lanthanides (La, Ce, Pr, Nd, ...
Solid-state Ln(2-MeO-BP) compounds, where Ln stands for trivalent Eu to Lu and Y(III) and 2-MeO-BP (...
Solid-state Ln(L)(3) compounds, where Ln stands for trivalent Tb, Dy, Ho, Er, Tm, Yb, Lu and Y, and ...
Solid state Ln-DMBP compounds, where Ln represents trivalent lanthanides (except for promethium) and...
Solid state compounds were prepared of Ln-4-MeO-BP, where Ln is a trivalent lanthanide (except prome...
Solid state Ln(2)-L(3) compounds, where Ln stands for heavy trivalent lanthanides (terbium to luteti...
Solid-state LnL3·1.25H2O compounds, where L is oxamate and Ln is light trivalent lanthanides, have b...
Characterization, thermal stability and thermal decomposition of light trivalent lanthanide succinat...
Solid-state compounds of general formula LnL(3).2H(2)O, where Ln is heavier trivalent lanthanides an...
Solid-state compounds Ln-4Cl-BP, where Ln represents lighter trivalent lanthanides and 4Cl-BP is 4-c...
Solid-state compounds with a general formula of LnL3· nH2O, where Ln stands for lighter trivalent la...
Solid-state Ln-L compounds, where Ln stands for heavy trivalent lanthanides or yttrium(III) (Tb-Lu, ...
Thermal and spectroscopic studies on solid trivalent lanthanides and yttrium(III) α-hydroxyisobutyra...
Solid state Ln-4-Me-BP compounds, where Ln stands for heavier trivalent lanthanides (gadolinium to l...
Solid state Ln-CP compounds, where Ln represents trivalent lanthanides (except for promethium) and y...
Solid state Ln-2-MeO-CP compounds, where Ln stands for light trivalent lanthanides (La, Ce, Pr, Nd, ...
Solid-state Ln(2-MeO-BP) compounds, where Ln stands for trivalent Eu to Lu and Y(III) and 2-MeO-BP (...
Solid-state Ln(L)(3) compounds, where Ln stands for trivalent Tb, Dy, Ho, Er, Tm, Yb, Lu and Y, and ...
Solid state Ln-DMBP compounds, where Ln represents trivalent lanthanides (except for promethium) and...
Solid state compounds were prepared of Ln-4-MeO-BP, where Ln is a trivalent lanthanide (except prome...
Solid state Ln(2)-L(3) compounds, where Ln stands for heavy trivalent lanthanides (terbium to luteti...
Solid-state LnL3·1.25H2O compounds, where L is oxamate and Ln is light trivalent lanthanides, have b...
Characterization, thermal stability and thermal decomposition of light trivalent lanthanide succinat...