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Cross-Linkable Fluorene-Based Hole Transporting Materials for Perovskite Solar Cells

16 Pages Posted: 16 Aug 2023 Publication Status: Preprint

See all articles by Egidijus Kamarauskas

Egidijus Kamarauskas

Vilnius University

Aiste Jegorove

Kaunas University of Technology

Romualdas J. Cepas

Vilnius University

Sarune Daskeviciute-Geguziene

Kaunas University of Technology

Kristijonas Genevicius

Vilnius University

Marius Franckevicius

Center for Physical Sciences and Technology (FTMC)

Florian Scheler

Helmholtz-Zentrum Berlin für Materialien und Energie GmbH

Kari Sveinbjornsson

Helmholtz-Zentrum Berlin für Materialien und Energie GmbH (HZB)

Vygintas Jankauskas

Vilnius University

Vytautas Getautis

Kaunas University of Technology

Martynas Talaikis

Vilnius University

Abstract

Cross-linkable hole transporting materials (HTMs) based on fluorene core containing vinyl groups were synthesized and analyzed. It has been demonstrated that these HTMs are cross-linkable at temperatures above 200 °C and they are thermally stable at up to 400 °C. Cross-linking has little effect on energy level (HOMO) and causes only slight changes in the hole drift mobility values at room temperature, due to changes in spatial and energetic disorder. While employing cross-linked fluorene-diphenylamine derivative (V1145) as an HTM layer between perovskite and indium-tin oxide (ITO) in inverted perovskite solar cells (PSCs), the power conversion efficiency (PCE) of the cell was 11.42% (under AM 1.5G 100 mW·cm-2 illumination), demonstrating the potential of the presented class of dopant-free organic HTMs.

Keywords: Cross-linking, hole transport material, solar cells, energetic and spatial disorder

Suggested Citation

Kamarauskas, Egidijus and Jegorove, Aiste and Cepas, Romualdas J. and Daskeviciute-Geguziene, Sarune and Genevicius, Kristijonas and Franckevicius, Marius and Scheler, Florian and Sveinbjornsson, Kari and Jankauskas, Vygintas and Getautis, Vytautas and Talaikis, Martynas, Cross-Linkable Fluorene-Based Hole Transporting Materials for Perovskite Solar Cells. Available at SSRN: https://ssrn.com/abstract=4539058 or http://dx.doi.org/10.2139/ssrn.4539058

Egidijus Kamarauskas (Contact Author)

Vilnius University ( email )

Universiteto 3
Saulėtekio 9
Vilnius
Lithuania

Aiste Jegorove

Kaunas University of Technology ( email )

Lithuania

Romualdas J. Cepas

Vilnius University ( email )

Sarune Daskeviciute-Geguziene

Kaunas University of Technology ( email )

Lithuania

Kristijonas Genevicius

Vilnius University ( email )

Marius Franckevicius

Center for Physical Sciences and Technology (FTMC) ( email )

Florian Scheler

Helmholtz-Zentrum Berlin für Materialien und Energie GmbH ( email )

Kari Sveinbjornsson

Helmholtz-Zentrum Berlin für Materialien und Energie GmbH (HZB) ( email )

Vygintas Jankauskas

Vilnius University ( email )

Universiteto 3
Saulėtekio 9
Vilnius
Lithuania

Vytautas Getautis

Kaunas University of Technology ( email )

Lithuania

Martynas Talaikis

Vilnius University ( email )

Universiteto 3
Saulėtekio 9
Vilnius
Lithuania

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