CPE-Na-Based Hole Transport Layers for Improving the Stability in Nonfullerene Organic Solar Cells: A Comprehensive Study

Resumen

Organic photovoltaic (OPV) cells have experienced significant development in the last decades after the introduction of nonfullerene acceptor molecules with top power conversion efficiencies reported over 19% and considerable versatility, for example, with application in transparent/semitransparent and flexible photovoltaics. Yet, the optimization of the operational stability continues to be a challenge. This study presents a comprehensive investigation of the use of a conjugated polyelectrolyte polymer (CPE-Na) as a hole layer (HTL) to improve the performance and longevity of OPV cells. Two different fabrication approaches were adopted: integrating CPE-Na with PEDOT:PSS to create a composite HTL and using CPE-Na as a stand-alone bilayer deposited beneath PEDOT:PSS on the ITO substrate. These configurations were compared against a reference device employing PEDOT:PSS alone, as the HTL increased efficiency and fill factor. The instruments with CPE-Na also demonstrated increased stability in the dark and under simulated operational conditions. Device-based PEDOT:PSS as an HTL reached T80 after 2500 h while involving CPE-Na in the device kept at T90 in the same period, evidenced by a reduced degradation rate. Furthermore, the impedance spectroscopy and photoinduced transient methods suggest optimized charge transfer and reduced charge carrier recombination. These findings collectively highlight the potential of CPE-Na as a HTL optimizer material for nonfluorine OPV cells.

Tipo de documento

Artículo


Versión publicada

Lengua

Inglés

Materias CDU

Palabras clave

Química

Páginas

11 p.

Publicado por

ACS Publications

Número del acuerdo de la subvención

S.M. acknowledges the financial support from Programa Martí i Franquès

M.R.-C. acknowledges the financial support from Diputació de Tarragona under Grant 2021CM14 and 2022PGR-DIPTA-URV04 and from CONACYT program postdoctoral under Grant BP-PA-20220624083033039-2364083.

Spanish Ministerio de Ciencia e Innovación (MICINN/FEDER) under Grants PDI2021-128342OB-I00

Agency for Management of University and Research Grants (AGAUR) ref 2021-SGR-00739

Catalan Institution for Research and Advanced Studies (ICREA) under the ICREA Academia Award

O.A. thanks Spain’s National Research Agency (Agencia Estatal de Investigación) for the Juan de la Cierva 2021 grant

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