4.5 Article

Enamine-based hole transporting materials for vacuum-deposited perovskite solar cells

Journal

SUSTAINABLE ENERGY & FUELS
Volume 4, Issue 10, Pages 5017-5023

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/d0se00728e

Keywords

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Funding

  1. European Union's Horizon 2020 research and innovation program under PerTPV project [763977]
  2. Research Council of Lithuania [MIP-17-70]
  3. Spanish Ministry of Science, Innovation and Universities [MAT2017-88821-R, RTI2018-095362-A-I00, EQC2018-004888-P]
  4. Comunitat Valenciana [IDI-FEDER/2018/061]
  5. TUBITAK 2214-A - International Doctoral Research Fellowship Programme

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In a short period of time, the rapid development of perovskite solar cells attracted a lot of attention in the science community with the record for power conversion efficiency being broken every year. Despite the fast progress in power conversion efficiency there are still many issues that need to be solved before starting large scale commercial applications, such as, among others, the difficult and costly synthesis and usage of toxic solvents for the deposition of hole transport materials (HTMs). We herein report new enamine-based charge transport materials obtainedviaa simple one step synthesis procedure, from commercially available precursors and without the use of expensive organometallic catalysts. The developed materials demonstrated rapid loss of mass during thermogravimetry analysis suggesting that they could be processed not only using solution processing but alsoviavacuum deposition. Furthermore, all HTMs demonstrated high charge carrier mobility withH2possessing the highest mobility of 2.5 x 10(-2)cm(2)V(-1)s(-1)under strong electric fields. The investigated materials were employed in vacuum-deposited p-i-n perovskite solar cells and champion devices with enamineH2demonstrate a PCE of 18.4%.

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