Národní úložiště šedé literatury Nalezeno 4 záznamů.  Hledání trvalo 0.00 vteřin. 
Nature-inspired macro cyclic systems for bioorganic applications
Prekopová, Terézia ; Cigánek, Martin (oponent) ; Krajčovič, Jozef (vedoucí práce)
The bachelor thesis deals with nature-inspired macrocyclic compounds and their possible use in organic bioelectronics. The theoretical part of this bachelor thesis introduces semiconductor materials in organic bioelectronics and provides a general overview of selected classes of macrocyclic compounds currently occurring. It includes their history, properties, reactivity and use in various industries. An important point of this part are cyclodextrins, which are characterized by their high biocompatibility and affinity for a wide range of guests depending on the structure of the cyclodextrin. They are capable of molecular recognition to form inclusion complexes with guest particles. The work also deals with chemical modifications of cyclodextrins in order to improve selected physicochemical properties and practical applications of cyclodextrins. The experimental part consists of the synthesis, purification and characterization of key macrocyclic -cyclodextrin derivatives selectively modified at position 6 of one glucopyranose unit for the synthesis and study of advanced supramolecular structures for potential applications in organic bioelectronics.
The synthesis of organic -conjugated systems for advanced photonic applications
Prekopová, Terézia ; Richtár, Jan (oponent) ; Krajčovič, Jozef (vedoucí práce)
This diploma thesis is focused on the synthesis of new, organic, -conjugated systems with potential use in the field of singlet fission (SF). It is one of the most efficient multiexciton generation processes studied so far, which offers the potential to increase the efficiency of solar cells. The theoretical part focuses on the description of SF and the molecules providing this phenomenon. The first aim of the experimental part is focused on the synthesis of target pentacene and anthracene derivatives. The work presents and verifies three synthetic approaches to the preparation of these molecules, of which only one has proven to be successful. The second aim deals with the synthesis of intermediates that are crucial for the preparation of target pyrene fused pyrazaacenes. The synthesis consists of the oxidation of pyrene and the condensation of 4,5-diketone or 4,5,9,10-tetraketone with commercially available diamines or diamines prepared by us. A basic optical characterization was performed on these derivatives, which showed the effect of substitution on excimer emission. Assuming the same quantum fluorescence yield for all molecules and comparing the spectral measurements, it was found that the solid phase excimer emission is significantly higher than in solution.
The synthesis of organic -conjugated systems for advanced photonic applications
Prekopová, Terézia ; Richtár, Jan (oponent) ; Krajčovič, Jozef (vedoucí práce)
This diploma thesis is focused on the synthesis of new, organic, -conjugated systems with potential use in the field of singlet fission (SF). It is one of the most efficient multiexciton generation processes studied so far, which offers the potential to increase the efficiency of solar cells. The theoretical part focuses on the description of SF and the molecules providing this phenomenon. The first aim of the experimental part is focused on the synthesis of target pentacene and anthracene derivatives. The work presents and verifies three synthetic approaches to the preparation of these molecules, of which only one has proven to be successful. The second aim deals with the synthesis of intermediates that are crucial for the preparation of target pyrene fused pyrazaacenes. The synthesis consists of the oxidation of pyrene and the condensation of 4,5-diketone or 4,5,9,10-tetraketone with commercially available diamines or diamines prepared by us. A basic optical characterization was performed on these derivatives, which showed the effect of substitution on excimer emission. Assuming the same quantum fluorescence yield for all molecules and comparing the spectral measurements, it was found that the solid phase excimer emission is significantly higher than in solution.
Nature-inspired macro cyclic systems for bioorganic applications
Prekopová, Terézia ; Cigánek, Martin (oponent) ; Krajčovič, Jozef (vedoucí práce)
The bachelor thesis deals with nature-inspired macrocyclic compounds and their possible use in organic bioelectronics. The theoretical part of this bachelor thesis introduces semiconductor materials in organic bioelectronics and provides a general overview of selected classes of macrocyclic compounds currently occurring. It includes their history, properties, reactivity and use in various industries. An important point of this part are cyclodextrins, which are characterized by their high biocompatibility and affinity for a wide range of guests depending on the structure of the cyclodextrin. They are capable of molecular recognition to form inclusion complexes with guest particles. The work also deals with chemical modifications of cyclodextrins in order to improve selected physicochemical properties and practical applications of cyclodextrins. The experimental part consists of the synthesis, purification and characterization of key macrocyclic -cyclodextrin derivatives selectively modified at position 6 of one glucopyranose unit for the synthesis and study of advanced supramolecular structures for potential applications in organic bioelectronics.

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