226 research outputs found
Flexible and Floating Photovoltaics
We present our results on dye sensitized solar cells (DSSCs) for flexible or floating photovoltaic devices.
In these works, we used polymer electrolyte membranes and metal grids as electrodes substrates in order to
preserve the flexibility of the entire structure. These cells aim to be competitive in the near future solar
market due to the extremely low cost and easiness of processing. Moreover, they evidently improve their
conversion efficiency under low illumination conditions. This feature makes flexible DSSCs extremely
interesting to be exploited in particular applications.
In addition, we also introduce a smart integration of a DSSC with an electrical double layer capacitor (EDLC)
which employs graphene nanoplatelets as active material in a completely flexible architecture. To the best
of our knowledge this harvesting-storage (HS) device has the best overall photon-to-electrical conversion and
storage efficiency ever attained to date for a flexible DSSC-based non-wired integrated HS device.
Noteworthy, this value increases lowering the radiation intensity, thus showing optimal performances in real
operation or indoor conditions
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