Inverted organic tandem solar cells with a charge recombination stack employing spatially confined p-type electrical doping

Author:

Chang Yi-Chien1ORCID,Larrain Felipe A.12ORCID,Fuentes-Hernandez Canek13ORCID,Park Youngrak1,Kippelen Bernard1ORCID

Affiliation:

1. Center for Organic Photonics and Electronics (COPE), School of Electrical and Computer Engineering, Georgia Institute of Technology 1 , Atlanta, Georgia 30332, USA

2. Faculty of Engineering and Sciences, Universidad Adolfo Ibáñez 2 , Santiago 7941169, Chile

3. Department of Electrical and Computer Engineering, Northeastern University 3 , Boston, Massachusetts 02115, USA

Abstract

We report on the application of solution-based p-type electrical doping using 12-molybdophosphoric acid hydrate (PMA) to the fabrication of organic tandem solar cells. Such a doping approach leads to a spatially confined vertical doping profile down to a limited depth from the surface of polymer films, thus allowing the hole-collecting component of the charge recombination stack to be embedded in the photoactive layer of the bottom sub-cell. This simplifies the device architecture by removing the need for an extra dedicated hole-collecting layer. It is shown that this novel charge recombination stack comprising a PMA-doped bottom photoactive layer and a trilayer of Ag/AZO/PEIE is compatible with a solution-processed top photoactive layer. The fabricated inverted organic tandem solar cells exhibit an open-circuit voltage that is close to the sum of the open-circuit voltages of the individual sub-cells, and a fill factor that is close to the better fill factor of the two sub-cells.

Funder

National Nuclear Security Administration

Publisher

AIP Publishing

Subject

General Physics and Astronomy

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