China Plastics ›› 2025, Vol. 39 ›› Issue (4): 1-7.DOI: 10.19491/j.issn.1001-9278.2025.04.001

• Materials and Properties •     Next Articles

Preparation and properties of an ultraviolet cut⁃off POE photovoltaic encapsulation film

HE Hezhi(), XIONG Huawei, LAI Wen   

  1. Guangdong Key Laboratory of Advanced Polymer Manufacturing Technology and Equipment,Key Laboratory of Polymer Molding and Processing Engineering of Ministry of Education,School of Mechanical and Automotive Engineering,South China University of Technology,Guangzhou 510000,China
  • Received:2024-12-23 Online:2025-04-26 Published:2025-04-23

Abstract:

In this study, hydrogenated hydrocarbon resin (H⁃HCR) was melt blended with POE using dicumyl peroxide (DCP) as a crosslinking agent and hexadecyl 3,5⁃di⁃tert⁃butyl⁃4⁃hydroxy⁃benzoate (UV2908) as a UV absorbers for fabricating a UV cut⁃off PV encapsulation film with high volume resistance. The transmittance of the blending films in the UV region (250~380 nm) was significantly reduced with an increase in the H⁃HCR content, and its high transmittance in the visible/near⁃infrared region of 380~1 100 nm was maintained. Meanwhile, UV2908 exhibited excellent UV cut⁃off performance in the range of 250~292 nm. The two components could generate a synergistic effect to prevent UV from entering PV modules, resulting in the formation of a PV encapsulation film with a high UV cut⁃off function. Meanwhile, the mechanical properties and volume resistivity of the blending films were significantly enhanced, and their volume resistivity reached the highest value at an H⁃HCR content of 15 wt%. When the POE/H⁃HCR/DCP/UV2908 mass ratio was 85/15/1.5/0.2, the average transmittance and UV cut⁃off wavelength of the blending films in the visible/near⁃infrared region are 91.6 % and 284 nm, respectively. Their tensile strength, elongation at break and volume resistivity reached 20.1 MPa, 904 % and 5.9×1015 Ω·cm, respectively. The blending materials demonstrated not only good volume resistivity and mechanical properties but also excellent UV cut⁃off performance.

Key words: photovoltaic encapsulant, high transmittance, ultraviolet cut-off, volume resistivity, composite material

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