ACC News Brief
Clean Energy Global
Ambient processing clears a tandem-solar manufacturing hurdle
What happened
A peer-reviewed laboratory study developed a three-part molecular contact that let small perovskite cells and perovskite-silicon tandems be fabricated in ordinary ambient conditions. A one-square-centimeter wide-bandgap cell reached 21.20 percent efficiency, and the ambient-fabricated tandem reached 31.72 percent, with 31.36 percent independently certified. These are research cells, not commercial modules or field deployments.
Why it matters
Reducing dependence on tightly controlled inert-atmosphere fabrication could remove a manufacturing barrier for high-efficiency tandems, but laboratory efficiency alone does not establish scalable yield, durability, cost, or responsible lead management.
What to watch
- Module-scale manufacturing yield, outdoor lifetime, encapsulation, material use, lead recovery, and independent reproduction.
- Whether ambient processing reduces cost and energy use without sacrificing performance when production moves beyond small laboratory cells.
Sources & evidence
- Ternary self-assembled molecular contact for ambient-processed perovskite/silicon tandem solar cellsPeer-reviewed laboratory device study, Nature Photonics, DOI 10.1038/s41566-026-01925-z, published June 1, 2026.
- UNIST Energy Harvesting Material System Lab publication recordOfficial lead-laboratory publication list identifying the study and its Nature Photonics publication.
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