News

MORE +
scroll down

Global Perovskite Industry Update: Efficiency, Stability and Industrialization Accelerating


In 2026, overseas perovskite continues rapid growth. Tandem efficiency keeps breaking records, stability validation moves toward module level, industrialization demo lines accelerate in the US and Europe, and flexible perovskite emerges as an important differentiated direction. Overall, the focus is shifting from lab efficiency to manufacturing yield, certification and economies of scale.

On efficiency, flexible progress is notable: flexible perovskite/crystalline silicon tandems reach 33.6% certified, and flexible single-junction devices exceed 25%, showing flexible routes are no longer just low-efficiency complements but are gaining independent competitiveness.

 

On stability, research is moving from material innovation to module-level validation. Multiple studies show devices retain most of their initial performance after high temperature, light soaking and thermal cycling, large-area modules showing no obvious degradation after dozens of days outdoors. Flexible devices show better mechanical durability under repeated bending and aging tests, though long-term outdoor reliability still needs further validation.

 

On industrialization, US and European deployment is accelerating. Europe is advancing roll-to-roll flexible perovskite factories and interconnection technologies. Flexible perovskite is gaining attention for differentiated advantages in wearables, IoT, aerospace and curved building surfaces, though mass production is still constrained by yield and certification.

 

In outlook, the industry consensus is that perovskite commercialization depends not only on efficiency records but on coordinated progress in manufacturing, standards, financing and policy. Single-junction perovskite fits BIPV, aerospace and agrivoltaics; perovskite-silicon tandems target the mass market; flexible perovskite finds space in lightweight and curved applications. The next stage will focus on manufacturing yield, IEC 61215 certification and economies of scale.

Overall, in 2026 overseas perovskite advanced across efficiency, stability, industrialization and policy support, with flexible perovskite moving from lab to pilot and demonstration applications.

 

 

Related news


Dazheng Weina was awarded third prize in the Enterprise Category of the 11th “Innovators China” Advanced Materials Competition!

Recently, the 11th “Innovators China” Advanced Materials SME Innovation and Entrepreneurship Competition concluded successfully. Ma Chen, Chairman of Dazheng Micro‑Nano, participated with the project “R&D and Industrialization of a Flexible Perovskite Gigawatt‑Scale Production Line,” where he systematically presented to the panel of expert judges the company’s technological breakthroughs and progress in industrializing flexible perovskite solar cells.


The Boundary Is the Starting Point: Dazheng Micro‑Nano Makes Its Debut at the 2026 Joul Era Perovskite Summit, Decoding the “Real Challenges” of Flexible Photovoltaics.

The “2026 JouleTimes Perovskite Technology Innovation and Industrial Chain Ecosystem Summit,” hosted by JouleTimes, was held in Ningbo, Zhejiang, on July 2–3, 2026. Yu Wang, Executive Deputy General Manager of Dazheng Micro‑Nano, delivered a presentation titled “The Boundaries of Flexibility: The Real Challenges of Perovskite Photovoltaics and Their Large‑Scale Deployment.”


Another Provincial-Level Key Project Approved! Dazheng Micro-Nano Teams Up with Universities to Focus on Mastering Core Materials for Flexible Perovskite Solar Cells

Following the successful approval of a provincial “Challenge-based Recruitment” project, Dazheng (Jiangsu) Micro-Nano Technology Co., Ltd. has once again joined forces with domestic universities to secure a key provincial-level special project under the China–Foreign Bilateral Innovation Cooperation Initiative for priority countries, marking another significant milestone in the company’s efforts to deepen industry–university–research collaboration and strengthen its core technology R&D.