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All compounds were characterized by using spectroscopic methods and elemental analysis.
The polymer synthesized was characterized by using spectroscopic methods and thermal analysis.
The synthesized Als was characterized using spectroscopic methods and a thermogravimetric analyzer.
The binuclear Cu2 + and Co2 + complexes of the receptors have been also prepared and characterized using spectroscopic methods and MALDI-TOF mass analysis.
Dipyrromethane functionalized monomers 1 4 have been synthesized and characterized using spectroscopic methods and X-ray diffraction analysis (monomer 4 and dialdehydes 5 and 6).
Given that the human serum albumin (HSA) is a major transporter protein with which TIMs can form stable complexes, and that the formation of these complexes might be advantageous for phototoxicity of TIMs we determined the quantitative parameters of TIMs-HSA binding using spectroscopic methods and molecular docking.
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The electrochemical method provides a general tool that complements the commonly used spectroscopic methods and immune method for the detection of PAHs.
For this purpose scientists in this area of research use spectroscopic methods and techniques such as nuclear magnetic resonance and infra red spectroscopy in addition to mass spectroscopy in order to identify the structure of unstable and stable compounds.
Reported compounds [N3P3Cl5 NC4H8O)] (1), cis-[N3P3Cl4 NC4H8O 2] (2), trans-[N3P3cis-[N3P3Cl4 NC4H8O 2ans-[N3P3(NC4H8O)2(R)4] [R = imidazole (4); benzimidazole (5); pyrazole (6)], spiro-[N3P3(OC3H6O)(R)4] [R = imidazole (8); benzimidazole (9); pyrazole (10)] were characterized using spectroscopic methods, elemental analysis and X-ray crystallography.
Nine fractions were separated (A-I) then scratched, eluted with the same mobile phase, filtered and the separated fractions were determined and identified using spectroscopic methods (Mass spectrum (MS), Infra red (IR) and Proton H-Nuclear magnetic resonance (H-NMR).
Aging of colloidal TiO2 suspensions has previously been investigated using spectroscopic methods (band gap energy determination) and a dynamic light scattering method (particle size determination).
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