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Historical and Future Learning for the New Era of Multi-Terawatt Photovoltaics

  • Kirstin Alberi
  • , I. Marius Peters
  • , Pierre Verlinden
  • , Simon Philipps
  • , Akio Koike
  • , Teresa Barnes
  • , Joe Berry
  • , Mariana Bertoni
  • , Christian Breyer
  • , Laurie Burnham
  • , Chris Case
  • , Yifeng Chen
  • , Stefaan De Wolf
  • , Renate Egan
  • , Armin Frotzheim
  • , Sebastian Gatz
  • , Markus Gloeckler
  • , Jan Christoph Goldschmidt
  • , Ivan Gordon
  • , Nancy Haegel
  • Martin Hermle, Christiana Honsberg, Edward Hsi, Bill Huber, Shogo Ishizuka, Arnulf Jager-Waldau, Joel Jean, Jessica Yajie Jiang, Shannon Jurca, Izumi Kaizuka, Richard King, Keiichi Komoto, Michio Kondo, Milind Kulkarni, Sarah Kurtz, Daniel Macdonald, Danielle Merfeld, Naoya Kobayashi, Shigeru Niki, Andreas Obst, Takashi Oozeki, Ulrich Paetzold, Jonathan Pickering, Ralf Preu, Samantha Reese, Christian Reichel, Thomas Reindl, Ingrid Repins, Geoffrey Ronoh, Doug Rose, Keiichiro Sakurai, Rutger Schlatmann, Abdelilah Slaoui, Ron Sinton, Kamal Soni, Billy Stanbery, Davor Sutija, Marko Topic, Yuzuru Ueda, Juzer Vasi, Karsten Wambach, Emily Warren, Eicke Weber, Masafumi Yamaguchi, Andreas Bett
  • University of Colorado Boulder
  • Forschungszentrum Julich
  • Yangtze Institute for Solar Technology
  • Fraunhofer Institute for Solar Energy Systems
  • AGC
  • Arizona State University
  • Lappeenranta University of Technology
  • Sandia National Laboratories
  • Oxford Photovoltaics
  • Trina Solar
  • King Abdullah University of Science & Technology
  • UNSW Australia
  • AMFutureTech
  • Von Ardenne
  • First Solar
  • University of Marburg
  • EnergyVille
  • Hasselt University
  • IMEC
  • Swiss RE
  • National Institute of Advanced Industrial Science & Technology
  • European Commission
  • Swift Solar
  • Nippon Sheet Glass
  • RTS Corporation
  • Mizuho
  • Waseda University
  • Renaissance Solar and Electronic Materials
  • University of California Merced
  • Australian National University
  • Q-Cells
  • JERA
  • Karlsruhe Institute of Technology
  • NexWafe
  • National University of Singapore
  • OFGEN
  • Maxeon Solar Technologies
  • Helmholtz-Zentrum Berlin
  • French National Centre for Scientific Research
  • Sinton Consulting
  • Corning
  • Colorado School of Mines
  • University of Ljubljana
  • Toyota
  • Indian Institute of Technology Bombay
  • Bifa Umweltinstitut
  • University of California at Berkeley
  • University of Freiburg

Research output: Contribution to journalArticlepeer-review

7 Scopus Citations

Abstract

Solar photovoltaics (PV) is entering a new era of multi-terawatt deployment, with 2 TW already in service and more than 75 TW predicted in many scenarios by 2050. This next era has been enabled by over five decades of cumulative advances in PV module cost reduction, performance and reliability. The current scale of deployment also introduces new needs, opportunities and challenges. In this Perspective we frame a path forwards based on learning, broadly defined as a combination of expansion of knowledge and advances through research and development, experience and collaboration. We discuss historical topics where learning has driven PV deployment until now, and emerging areas that are required to sustain high levels of future deployment. We expect progress to continue in terms of module price, performance and reliability, driven by advances in PV cell and module design, the emergence of tandem devices and increased focus on extending module lifetimes. Large-scale deployment also means large-scale sustainability and responsibility. We therefore posit that additional metrics, such as the impact on global CO2 emissions, resource consumption and design for reuse and recycling, will become increasingly important to the PV industry and provide opportunities for further learning.
Original languageAmerican English
Pages (from-to)38-46
Number of pages9
JournalNature Energy
Volume11
DOIs
StatePublished - 2026

NLR Publication Number

  • NLR/JA-5K00-93830

Keywords

  • efficiency
  • photovoltaics
  • tandems

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