Dynamic, Charge Photogeneration and Excitons Distribution Function in Organic Bulk Heterojunction Solar Cells

dc.contributor.authorMadogni, Vianou Irénée
dc.contributor.authorKOUNOUHEWA, BASILE BRUNO
dc.contributor.authorAGBOMAHENNA, MACAIRE BIENVENU
dc.contributor.authorAMOUSSA, HOUNPKATIN. SALIOU
dc.date.accessioned2026-06-02T16:06:57Z
dc.date.available2026-06-02T16:06:57Z
dc.date.issued2015
dc.description.abstractIn this work, the excitons distribution function in organic bulk hetero junction solar cells, at a depth z has been determined from solving the charge continuity equation, by exploiting the Laplace transform with appropriate boundary conditions. Next, the influence of the electron-hole pair separation distance on the excitons dissociation probability, the internal quantum efficiency and the binding energy, has been studied. The simulated results show that the probability density of the carriers photo generated depends on the generation rate, excitons dissociation and the charge carriers in the cells. The potential improvement of the internal quantum efficiency of charge generation depends on electron-hole pair separation distance, the excitons dissociation probability into free charges and depends strongly on the optical absorption of the photons in the active layer.
dc.identifier.doi10.4236/ojapps.2015.58050
dc.identifier.otherBECDB-3134
dc.identifier.urihttps://dspace.uac.bj/handle/123456789/3115
dc.language.isofr
dc.relation.ispartofOpen Journal of Applied Sciences
dc.subjectDistribution Function
dc.subjectExcitons
dc.subjectLaplace Transform
dc.subjectInternal Quantum Efficiency
dc.subjectDissociation
dc.subjectProbability
dc.titleDynamic, Charge Photogeneration and Excitons Distribution Function in Organic Bulk Heterojunction Solar Cells
dc.typeArticle

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