Publications by authors named "Ambata M Poe"

A complete photophysical characterization of organic molecules designed for use as molecular materials is critical in the design and construction of devices such as organic photovoltaics (OPV). The nature of a molecule's excited state will be altered in molecules employing the same chromophoric units but possessing different molecular architectures. For this reason, we examine the photophysical reactions of two BODIPY-based D-A and A-D-A molecules, where D is the donor and A is the acceptor.

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Article Synopsis
  • The study investigates how well high-Tg polynorbornene micelles can encapsulate a hydrophobic dye, BODIPY, by analyzing changes in absorption spectra.
  • It was found that these micelles can load one BODIPY dye per ten polymers, and increasing the size of the hydrophilic block in the polymers allows for more dye to be incorporated.
  • The research also highlights a notable 740 μs triplet lifetime for the encapsulated BODIPY, which is the longest measured at room temperature and is linked to reduced triplet-triplet interactions in the micelle's dense environment.
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Polymer solar cells fabricated in air under ambient conditions are of significant current interest, because of the implications in practicality of such devices. However, only moderate performance has been obtained for the air-processed devices. Here, we report that enhanced short circuit current density (JSC) and open circuit voltage (VOC) in air-processed poly(3-hexylthiophene) (P3HT)-based solar cells can be obtained by using a series of donor-acceptor dyes as the third component in the device.

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A series of acceptor-donor-acceptor molecules containing terminal BODIPY moieties conjugated through the meso position were synthesized. Deep LUMO energy levels and good visible absorption led to their use as acceptors in bulk heterojunction solar cells. Inverted devices were fabricated, reaching efficiencies as high as 1.

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