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Titlebook: Biomimetic Dye Aggregate Solar Cells; Peter L. Marek Book 2013 Springer International Publishing Switzerland 2013 Bacteriochlorophylls of

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From French Canadian to Quebecertronic properties, which depend on the aggregate morphology, such as the aggregate structure and size. Absorption spectroscopy in combination with scanning electron microscopy (SEM) was used in order to determine if there is a correlation between the optical and morphological properties of the aggre
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https://doi.org/10.1007/978-3-031-33830-4aggregates, which have a highly ordered crystalline structure, what could be inferred from XRD and TEM investigations, their exciton coupling in the UV-Vis-NIR absorption spectra and also their ability to fluoresce in the solid-state. A high mean exciton lifetime in the J-aggregates of 40 ps, could
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https://doi.org/10.1007/978-3-642-45321-2ance of the solar cells under illumination, an incandescent lamp with 60-W power and with a reflecting coating at the rear side (denoted as: the lamp), has been used in a standardized setup to ensure the same illumination conditions for all solar cells. The setup was located within a metal cage to e
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Nachum Dershowitz,Ephraim Nissanid iodide-based electrolyte, P2 performed very poor, most probably due to its partial dissolution within such solvent mixtures. The solid-state version of these solar cells, with a mesoporous TiO. layer infiltrated by amorphous P2, performed much better. On flat and in coarse-porous TiO. layers, whi
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https://doi.org/10.1007/978-3-642-45324-3 been investigated toward its applicability to solar cells. This fully synthetic dye, self-assembles to orderly structured nano- to micrometer-sized rod-shaped aggregates, which might improve solar cells based on conventional organic dyes. In order to use the full potential of the dye aggregates, th
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Construction of Solar Cellsxclude any influence of the environmental light. The solar cells were placed in a fixed central position 10 cm beneath the lamp, as shown in Fig. 6.1. Underneath the solar cell a sheet of black paper was placed to ensured that no light could be reflected back to pass the solar cell twice.
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