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Cyclic voltammetry was used to examine the adsorption behaviour of these compounds.
The chromatographic behaviour of these compounds was studied to demonstrate their chromatographic efficiency, retention, and peak symmetry.
The model was able to predict correctly the behaviour of these compounds in 90% of the cases.
The structures and chemical behaviour of these compounds have been compared to those of their isomer (3) trans-[PtCl2NH3 4-hydroxymethylpyridine)] previously strans-[PtCl2NH3 4-hydroxymethylpyridine
Electrochemical behaviour of these compounds was studied using cyclic voltammetry (CV), adsorptive stripping CV and open circuit adsorptive transfer stripping CV.
The polymerization behaviour of these compounds under air and nitrogen atmosphere has been studied by Fourier transform infra-red spectroscopy, ultra-violet visible spectroscopy, differential scanning calorimetry and proton nultra-violet visiblenance spectroscopy.
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The liquid crystalline behaviours of these compounds were thoroughly examined by differential scanning calorimetry and polarizing optical microscope techniques.
We suggest an explanation for the observed behaviour of these new compounds.
We have focused on describing aspects of the synthesis, the crystal structures and the magnetic behaviour of these coordination compounds with low nuclearity.
UV visible and steady state fluorescence in solution and solid thin film were applied in order to characterize the photophysical behaviour of the compounds.
The isolated nature of [CoCl4]2- tetrahedra in the crystal reflect in paramagnetic behaviour of the compound.
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