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Pure POE PV Adhesive Film Market Share Driven by Advanced Solar Module Adoption and High-Performance Encapsulation Demand | Valuates Reports

12-11-2025 07:24 AM CET | Advertising, Media Consulting, Marketing Research

Press release from: Valuates Reports

Pure POE PV Adhesive Film Market
Pure POE PV Adhesive Film is an elastomeric material obtained by random copolymerization of ethylene and α-olefins. It is used for the encapsulation of photovoltaic modules. It has high water resistance, PID resistance, aging resistance, and mechanical properties. It is mainly used for the encapsulation of high-efficiency photovoltaic modules such as double-glass and N-type.
The global Pure POE PV Adhesive Film market was valued at US$ million in 2023 and is anticipated to reach US$ million by 2030, witnessing a CAGR of %during the forecast period 2024-2030.

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The Pure POE PV Adhesive Film Market is gaining strong momentum as solar manufacturers increasingly prioritize high-efficiency encapsulation materials to enhance module durability, reliability, and long-term energy output. Market trends indicate a shift toward advanced polymer technologies that support next-generation photovoltaic cells, particularly in response to rising solar deployment, improved moisture resistance requirements, and evolving preferences for materials that strengthen module stability. These dynamics contribute significantly to overall market size, while continuous improvements in POE formulations support steady market growth across global solar supply chains.

Within the type segmentation, the Transmittance >90% segment holds a notable market share due to its superior optical clarity, enhanced power generation capability, and compatibility with high-efficiency solar modules. The Transmittance 90% segment also contributes meaningfully to the market, supported by stable performance and cost advantages that appeal to mid-range module manufacturers. Together, these categories shape the material landscape as producers prioritize film quality, stability, and module productivity.

In terms of application, the PERC cell segment currently leads the market as PERC technology continues to dominate global solar production lines. Meanwhile, the N-Type cell segment is expanding rapidly, driven by increasing deployment of TOPCon and HJT modules that require higher-quality encapsulation with improved electrical insulation and moisture resistance. The others segment-including specialized or emerging cell architectures-also supports additional market growth as manufacturers diversify their module offerings.

Leading companies such as Dow, Mitsui Chemicals, LG Chem, SABIC, Exxon, Satinal, Sinopont, Shanghai HIUV New Materials, Lifecome Biochemistry, Cybrid Technologies, Betterial, First New Energy, Cnlushan, Crown Advanced Material, Excitontech, Xingchuan New Materials, Sveck, and Evergreen New Materials play a central role in shaping the competitive landscape. Their strengths include advanced polymer engineering, supply chain integration, and formulation improvements that enhance module durability and performance, enabling these players to strengthen their global market share.

Regionally, Asia-Pacific-led by China, Japan, South Korea, and Taiwan-dominates both production and consumption due to strong solar module manufacturing ecosystems and rapid adoption of high-efficiency cells. Europe and North America maintain substantial demand driven by solar installation growth and increasing investment in renewable energy. Emerging regions including Southeast Asia and Latin America also contribute to expanding consumption as solar infrastructure accelerates. Looking ahead, the market forecast indicates sustained market growth supported by technological innovation, advanced encapsulation requirements, capacity expansion, and stronger global commitments to clean energy technologies.

by Type

• Transmittance 90%
• Transmittance>90%

by Application

• Perc Cell
• N-Type Cell
• Others

By Company
Dow, Mitsui Chemicals, LG Chem, SABIC, Exxon, Satinal, Sinopont, Shanghai HIUV New Materials, Lifecome Biochemistry, Cybrid Technologies, Betterial, First New Energy, Cnlushan, Crown Advanced Material, Excitontech, Xingchuan New Materials, Sveck, Evergreen New Materials

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https://reports.valuates.com/market-reports/QYRE-Auto-4C18150/global-pure-poe-pv-adhesive-film

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