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Perovskite-Inspired Cs₂AgBi₂I₉: A Promising Photovoltaic Absorber for Diverse Indoor Environments

  • Krishnaiah Mokurala
  • , Kuntal Singh
  • , Sanchi Monga
  • , Akash Tripathi
  • , Sougata Karmakar
  • , Ramesh Kumar
  • , Christos Tyrpenou
  • , George Volonakis
  • , Debjit Manna
  • , Paavo Mäkinen
  • , K. V. Adarsh
  • , Saswata Bhattacharya*
  • , G. Krishnamurthy Grandhi
  • , K. D.M. Rao*
  • , Paola Vivo*
  • *Tämän työn vastaava kirjoittaja

Tutkimustuotos: ArtikkeliTieteellinenvertaisarvioitu

26 Sitaatiot (Scopus)
158 Lataukset (Pure)

Abstrakti

Indoor photovoltaics (IPVs) using low-toxicity bismuth-based perovskite-inspired materials (PIMs) can potentially power the growing number of Internet of Things devices sustainably. However, modest indoor power conversion efficiency (PCE) values are reported due to intrinsic limitations of PIMs, particularly regarding charge carrier separation and transport. Herein, polycrystalline Cs₂AgBi₂I₉ thin films are developed with high phase purity and study their fundamental structural and photophysical properties. The comprehensive experimental and computational study reveals unique optoelectronic properties of Cs₂AgBi₂I₉ compared to other bismuth-containing PIMs, including weak electron-phonon coupling and low exciton binding energy (40 meV). This study also demonstrates the feasibility of large and highly mobile polaron formation in Cs₂AgBi₂I₉, supported by the observation of a phonon bottleneck and a delayed hot carrier lifetime of over 200 ps, which suggests enhanced defect tolerance and transport properties. Motivated by the suitable bandgap of this absorber (1.78 eV), the first Cs₂AgBi₂I₉-based IPVs are developed, achieving a PCE of ≈8% at 1000 lux. Notably, the devices maintain high performance across various indoor environments with white LED color temperatures ranging from 2700 to 6500 K. The calculated theoretical PCE limit of >40% and the promising operational stability position Cs₂AgBi₂I₉ as one of the most intriguing candidates for sustainable IPVs.

AlkuperäiskieliEnglanti
Artikkeli2404547
JulkaisuAdvanced Energy Materials
Vuosikerta15
Numero7
Varhainen verkossa julkaisun päivämäärä26 jouluk. 2024
DOI - pysyväislinkit
TilaJulkaistu - 2025
OKM-julkaisutyyppiA1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä

Rahoitus

M.K. and K.S. contributed equally to this work. P.V. and G.K.G. acknowledge the financial support of Jane and Aatos Erkko foundation within the SOL\u2010TECH project. P.V. thanks Research Council of Finland, Decision No. 347772. M.K. and P.V. acknowledge the support of the SPOT\u2010IT project founded by the CETPartnership, the Clean and Energy Transition Partnership under the 2022 CET Partnership joint call for research proposal, co\u2010founded by the European Commission (GA 101069750) and with the founding of the organizations detailed on https://cetpartnership.eu/funding\u2010agencies\u2010and\u2010call\u2010modules . M.K. and P.V. thank the SPINIP\u2010 HORIZON\u2010MSCA\u20102023\u2010PF\u20101 (Project Grant No: 101150357) for funding. C.T. and G.V. acknowledge financial support by the Agence Nationale pour la Recherche through the CPJ program and the SURFIN project (Grant No. ANR\u201023\u2010CE09\u20100001). P.M. thanks the financial support of the Finnish Cultural Foundation (grant 00240880, Kalle & Dagmar V\u00E4limaa fund). K. D. M. R. acknowledges the Science and Engineering Research Board (SERB, CRG/2022/0048730) and UGC\u2010DAE CRS/2022\u2010 23/01/676 projects for financial support and IACS for research facilities. K.S. acknowledges CSIR for fellowship. S.K. acknowledges UGC for fellowship. K.V.A. and A.T. gratefully acknowledge the support from the Department of Science and Technology (DST), India, through the project DST/NM/TUE/QM\u20108/2019(G)/1. The work is part of the Research Council of Finland Flagship Programme, Photonics Research and Innovation (PREIN), decision number 346511. This work made use of Tampere Microscopy Center facilities at Tampere University.S.M. acknowledges IIT Delhi for the senior research fellowship. S.B. acknowledges financial support from SERB under a core research grant [Grant No. CRG/2019/000647] to set up the High\u2010Performance Computing facility \u201CVeena\u201D at IIT Delhi for computational resources.

RahoittajatRahoittajan numero
Council of Scientific and Industrial Research India
University Grants Commission
Jane ja Aatos Erkon Säätiö
Agence Nationale de la RechercheANR‐23‐CE09‐0001
European CommissionGA 101069750, 101150357
UGC-DAE Consortium for Scientific Research IndiaCRS/2022‐ 23/01/676
Indian Institute of Technology DelhiCRG/2019/000647
Department of Biotechnology, Ministry of Science and Technology, IndiaDST/NM/TUE/QM‐8/2019(G)/1, 346511
Suomen Kulttuurirahasto00240880
Science and Engineering Research BoardCRG/2022/0048730

    YK:n kestävän kehityksen tavoitteet

    Tämä tuotos edistää seuraavia kestävän kehityksen tavoitteita:

    1. SDG 7 – Edullinen ja puhdas energia
      SDG 7 – Edullinen ja puhdas energia

    Julkaisufoorumi-taso

    • Jufo-taso 3

    !!ASJC Scopus subject areas

    • Renewable Energy, Sustainability and the Environment
    • Yleinen materiaalitiede

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