How It's Built
Verde's proprietary coating process is designed to deliver significantly higher power density than competing flexible thin-film technologies, with a projected cost per watt substantially below conventional silicon. This is enabled by high-throughput roll-to-roll manufacturing and a dramatically simpler supply chain.
Tech
Efficiency Timeline
The rapid efficiency climb of perovskite solar cells from under 4% at first demonstration in 2009 to over 26% today represents one of the fastest improvement trajectories in the history of photovoltaics
Efficiency
Our next-generation technology has rapidly climbed the efficiency curve, breaking past the physical limitations of traditional silicon technology
Tech
Performance Potential
Commercial silicon panels are approaching their practical efficiency ceiling near 23–24%, and even the best silicon lab cells are constrained to ~29% by fundamental physics. Perovskite tandem architectures face no such ceiling, with multi-junction configurations targeting efficiencies well above 30%
Power
Perovskites used in photovoltaic architectures offer a theoretical efficiency ceiling far beyond legacy materials, delivering up to 40% more power for your projects
Tech
Manufacturing At Scale
The challenge with perovskites has been stability and scaling. "Sheet-to-sheet" assembly methods are labor and direct cost intensive which cannot be efficiently scaled. Verde solves this with our proprietary materials, coating and processing techniques.
Cost
The Cost Per Watt Breakthrough. Explore the exact cost breakdown of our proprietary coating process, which leverages existing industrial capacity to achieve the lowest manufacturing cost in the industry
- %
Efficiency predicted
- x
Lighter than traditional panels
- ↓%
Reduction in Levelized Cost of Energy
- <$.
Per watt




