Best results in : Research Potential Pokaż wszystkie wyniki (1)
Search results for: SQUARAINE
-
Zespół Fotofizyki Układów Molekularnych
Research PotentialTematyka badawcza Zespołu jest związana z badaniem stanów wzbudzania elektronowego w układach molekularnych oraz podstawowych procesów elektronowych limitujących działanie ograniczonych diod elektroluminescencyjnych i ogniw fotowoltaicznych - pod kątem polepszenia ich parametrów technicznych.
Other results Pokaż wszystkie wyniki (3)
Search results for: SQUARAINE
-
Unravelling the role of electron–hole pair spin in exciton dissociation in squaraine-based organic solar cells by magneto-photocurrent measurements
PublicationA high absorption coefficient and narrow absorption bands in squaraine (SQ) dyes have resulted in rapidly growing interest in them as a donor material in photovoltaic devices. The exciton dissociation process in organic systems proceeds via a multistep mechanism where the electron–hole pairs (charge transfer states) involved in the current generation process determine the recombination losses and subsequently limit the overall...
-
Magnetic field effects in dye-sensitized and organic solar cells
PublicationThe charge recombination and exciton dissociation are generally recognized as the basic electronic processes limiting the efficiency of photovoltaic devices. The aim of this thesis is to understand the electronic processes limiting the operation of efficient solar cells with particular emphasis on the role of electronic states endowed with magnetic dipole moment. The research work is divided into two parts. The first part deals...
-
Magnetic field effects in dye-sensitized solar cells controlled by different cell architecture
PublicationThe charge recombination and exciton dissociation are generally recognized as the basic electronic processes limiting the efficiency of photovoltaic devices. In this work, we propose a detailed mechanism of photocurrent generation in dye-sensitized solar cells (DSSCs) examined by magnetic field effect (MFE) technique. Here we demonstrate that the magnitude of the MFE on photocurrent in DSSCs can be controlled by the radius and...