4.8 Review

Device Performance of Emerging Photovoltaic Materials (Version 2)

Journal

ADVANCED ENERGY MATERIALS
Volume 11, Issue 48, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/aenm.202102526

Keywords

bandgap energy; emerging photovoltaics; flexible photovoltaics; photovoltaic device operational stability; tandem solar cells; transparent and semitransparent solar cells

Funding

  1. European Union [871336]
  2. DFG [INST 90/917-1 FUGG, SFB 953, 182849149, IGK 2495]
  3. grant ELF-PVDesign and development of solution processed functional materials for the next generations of PV technologies [44-6521a/20/4]
  4. grant Solar Factory of the Future [FKZ 20.2-3410.5-4-5]
  5. SolTech Initiative by the Bavarian State Government
  6. FAPESP [2017/11986-5]
  7. Shell
  8. ANP (Brazil's National Oil, Natural Gas and Biofuels Agency) through the R&D levy regulation
  9. National Science Foundation [CBET-1702591]
  10. US Department of Energy Office of Energy Efficiency and Renewable Energy Solar Energy Technologies Office [34351]
  11. Projekt DEAL

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The report summarizes the best achievements and performance parameters of emerging photovoltaic devices, and extends the focus to tandem solar cells.
Following the 1st release of the Emerging photovoltaic (PV) reports, the best achievements in the performance of emerging photovoltaic devices in diverse emerging photovoltaic research subjects are summarized, as reported in peer-reviewed articles in academic journals since August 2020. Updated graphs, tables, and analyses are provided with several performance parameters, e.g., power conversion efficiency, open-circuit voltage, short-circuit current density, fill factor, light utilization efficiency, and stability test energy yield. These parameters are presented as a function of the photovoltaic bandgap energy and the average visible transmittance for each technology and application and are put into perspective using, e.g., the detailed balance efficiency limit. The 2nd instalment of the Emerging PV reports extends the scope toward tandem solar cells and presents the current state-of-the-art in tandem solar cell performance for various material combinations.

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