4.6 Article

High-efficiency organic solar cells based on a halide salt and polyfluorene polymer with a high alignment-level of the cathode selective contact

期刊

JOURNAL OF MATERIALS CHEMISTRY A
卷 6, 期 45, 页码 -

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c8ta05778h

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资金

  1. Catedra-CONACYT para Jovenes Investigadores [7340, CVU-227699]
  2. Laboratorio Nacional SEDEAM CONACYT under the Call 2018 Apoyos Complementarios para la Consolidacion de Laboratorios Nacionales CONACYT [293384]
  3. Consejo Nacional de Ciencia y Tecnologia (CONACYT) in Mexico [237213]
  4. CONACYT [CVU-223920]
  5. Spanish Ministry of Economy and Competitiveness (MINECO-FEDER) [TEC2015-71324-R]
  6. Catalan Government [TEC2015-71915-REDT, 2017-SGR-1527]
  7. ICREA under the ICREA Academia Award

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Advances in organic photovoltaic technology for improving the power conversion efficiency (PCE) towards the theoretical maximum require efficient light-absorbing polymers, a high alignment-level of selective contacts, and an easy manufacturing process with low cost to reach them. The halide salts constitute a highly promising class of materials that can produce better selective contacts in solar cells for improving the PCE. In this article, we demonstrate and report the use of a haloid salt in organic solar cells utilized as an interlayer. The haloid salt is deposited on top or below of polyfluorene polymer (PFN) layer and after it is placed on a transparent conductive oxide (TCO). Thermal evaporation of LiF layers is carried out to deposit ultrathin films of 0.5 nm to 0.8 nm thickness. As a photoactive layer we use the low-bandgap PBDTTT-EFT:PC70BM bulk-heterojunction. Among the different architectures analyzed we obtained a PCE of 11.00%, with an outstanding fill factor of FF = 73.5%, which is among the best reported for solar cells. This new stacking of a halide salt with polyfluorene materials could find use in fully exploiting the potential of various halide systems, and also opens up new opportunities to improve OSCs with a view to achieving record efficiencies.

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