260 resultados para Benzo[a]pireno


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A metal-free dehydrogenative lactonization of 2-arylbenzoic acids at room temperature was developed. This work illustrates the first application of visible-light photoredox catalysis in the preparation of benzo-3,4-coumarins, an important structural motif in bioactive molecules. The combination of photocatalyst [Acr+-Mes] with (NH4)2S2O8 as a terminal oxidant provides an economical and environmentally benign entry to different substituted benzocoumarins. Preliminary mechanistic studies suggest that this reaction most likely occurs through a homolytic aromatic substitution pathway.

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A maioria dos estudos envolvendo adsorção de hidrocarbonetos policíclicos aromáticos (HPA) é realizada em solos de regiões de clima frio. Como em países tropicais as características dos processos pedológicos e os solos resultantes são diferentes há necessidade desses estudos em solos brasileiros. Com esse objetivo, este trabalho estudou a adsorção de pireno em Argissolo, Neossolo Quartzarênico e Vertissolo. Verificou-se ainda que não foi somente o teor de matéria orgânica responsável pelo equilíbrio do processo de adsorção como esperado. A presença de argilas expansivas pode ter contribuição para o aumento da quantidade de pireno adsorvida no solo (Q), como foi verificado para o Vertissolo. Foi observado que as categorias de solos estudadas apresentam características físicoquímicas e Koc muito diferentes indicando que o processo de adsorção de pireno nestes solos não pode ser considerado como um modelo único.

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Negli ultimi anni è notevolmente aumentato l’interesse nei confronti dei materiali organici semiconduttori da utilizzare in diversi dispositivi, come, ad esempio, celle fotovoltaiche organiche (OPV). In questo campo si inseriscono i polimeri coniugati ed in particolar modo i polialchiltiofeni (PATs). In questa tesi di laurea magistrale vengono descritte sintesi di monomeri e polimeri tiofenici 3-alchil-sostituiti contenenti un'unità elettron accettrice di benzotiadiazolo. In particolar modo sono stati sintetizzati poli-4,7-bis-(3-esiltiofen-2-il)benzo [1,2,5]tiadiazolo e poli- 4,7 -bis-(3-metossiesiltiofene-2-il)benzo[1,2,5]tiadiazolo, studiando l’effetto dell’ossigeno presente in catena laterale sulle proprietà del materiale. È stata effettuata la caratterizzazione chimico fisica dei polimeri tramite analisi termiche DSC e TGA, cromatografia a permeazione su gel (GPC) e analisi UV-Vis e PL. Sono state inoltre effettuate prove di conducibilità testando i polimeri come materiali fotoattivi in celle fotovoltaiche SMOCs e BHJ, per valutare l’effetto dell’unità di benzotiadiazolo sul trasporto delle cariche.

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Organic Light-Emitting Diodes (OLEDs) technology has matured over recent years, reaching the commercialization level and being used in various applications. The required efficiency can be achieved by transforming triplet excitons into singlet states via Reverse InterSystem Crossing (RISC), which a general mechanism called thermally activated delayed fluorescence (TADF). Two prototypical molecules in the field, 2CzBN and 4CzBN, Carbazole Benzonitrile (donor-acceptor) derivatives, possess similar energy gap between singlet and triplet (∆EST, a key parameter in the RISC rate), but different TADF performance. In this sense, other parameter must be considered to explain these different behaviors. In this work, we theoretically investigate 2CzBN and 4CzBN and address the problem of how flexible donor-acceptor (D-A) or donor-acceptor-donor (D-A-D) molecular architectures affect the nature of excited state, and the oscillator strength. Furthermore, we analyze the RISC rates as a function of the conformation of the carbazole side groups, considering the S0, S1, T1 and T2 states. The oscillator strength of 4CzBN is higher than of 2CzBN, which, in turn, is almost vanishing, resulting in only 4CzBN being a TADF active molecule. We also note the presence of a second triplet state T2 lower in energy than S1, and that the reorganization energies, associated to the RISC processes involving T1 and T2, are both important factor in differentiating the rates in 2CzBN and 4CzBN. However, the 4CzBN RISC rate from T2 to S1 is surprisingly high with respect to the one from T1 to S1, although, according to EL-Sayed rules, since T2 (CT/LE) is more similar to S1 (CT) than in 2CzBN (LE, CT), this transition should be less favored. These insights are important to understand the photophysics of the TADF process and to design novel TADF emitters based on the benzo-carbazole architecture.

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The technology of Organic Light-Emitting Diodes has reached such a high level of reliability that it can be used in various applications. The required light emission efficiency can be achieved by transforming the triplet excitons into singlet states through Reverse InterSystem Crossing (RISC), which is the main process of a general mechanism called thermally activated delayed fluorescence (TADF). In this thesis, we theoretically analyzed two carbazole-benzonitrile (donor-acceptor) derivatives, 2,5-di(9H-carbazol-9-yl)benzonitrile (p-2CzBN) and 2,3,4,5,6-penta(9H-carbazol-9-yl)benzonitrile (5CzBN), and addressed the problem of how donor-acceptor (D-A) or donor-acceptor-donor (D-A-D) flexible molecular architectures influence the nature of the excited states and the emission intensity. Furthermore, we analyzed the RISC rates as a function of the conformation of the carbazole lateral groups, considering the first electronic states, S0, S1, T1 and T2, involved in TADF process. The two prototype molecules, p-2CzBN and 5CzBN, have a similar energy gap between the first singlet and triplet states (∆EST, a key parameter in the RISC rate), but different TADF performances. Therefore, other parameters must be considered to explain their different behavior. The oscillator strength of p-2CzBN, never tested as emitter in OLEDs, is similar to that of 5CzBN, which is an active TADF molecule. We also note that the presence of a second T2 triplet state, lower in energy than S1 only in 5CzBN, and the reorganization energies, associated with RISC processes involving T1 and T2, are important factors in differentiating the rates in p-2CzBN and 5CzBN. For p-2CzBN, the RISC rate from T2 to S1 is surprisingly higher than that from T1 to S1, in disagreement with El-Sayed rules, due to a large reorganization energy associated to the T1 to S1, process; while the contrary occurs for 5CzBN. These insights are important for designing new TADF emitters based on the benzo-carbazole architecture.