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The motivation of Microwave Synthesis of Three Components Reactions and Aqueous Synthesis (water mediated) Reaction condition tools, synthesis under inert gas as new synthetic methodology of novel D-¿-A, D(2A), N-bridge Head Self-Assembly [ICT] Heterocyclic Moieties, Related Cyanine Dyes, (DD) 2-D-A, Ruthenium (ii) Complexes, Hole transport materials (HTM) in order to select the optimal conditions to be used as dye sensitized solar cells (DSSCs) is to improve the SpecificCharacterization, Photosensitization Behaviour & Probable Application in the field of Biology, Medical Science, Technology…mehr

Produktbeschreibung
The motivation of Microwave Synthesis of Three Components Reactions and Aqueous Synthesis (water mediated) Reaction condition tools, synthesis under inert gas as new synthetic methodology of novel D-¿-A, D(2A), N-bridge Head Self-Assembly [ICT] Heterocyclic Moieties, Related Cyanine Dyes, (DD) 2-D-A, Ruthenium (ii) Complexes, Hole transport materials (HTM) in order to select the optimal conditions to be used as dye sensitized solar cells (DSSCs) is to improve the SpecificCharacterization, Photosensitization Behaviour & Probable Application in the field of Biology, Medical Science, Technology and Physics. N-Bridge Head Heterocyclic Functional & Related Islam M. Abdellah, Ph.D., 2018, Dyes were identified by elemental & Spectral Analyses. Special attention have been focus on the Absorption (Emission) Spectral, Solvato(Media)Chromic Behaviour (Acid-Base Properties), Photovoltaics, Electrochemical Impedance and Molecular Modeling (Theoretical Calculations) studies for some selected functional dyes.
Autorenporträt
Prof. Dr. A. I. M. Koraiem:Profesor titular de tintes heterocíclicos fotosensibles, Facultad de Ciencias, Universidad de Asuán.