4.7 Article

Photovoltaic modules encapsulated in composite material modified with ultraviolet additives

Journal

SOLAR ENERGY MATERIALS AND SOLAR CELLS
Volume 230, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.solmat.2021.111250

Keywords

Photovoltaic module; Composite material; Ultraviolet additives; Cell-to-module loss; Performance stability

Funding

  1. Provincial Council of Gipuzkoa [55/2019]
  2. Basque Government Elkartek 2020 Programme [KK-2020/00077]

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The use of ultraviolet absorber (UVA) and hindered amine light stabilizer (HALS) additives in epoxy resin can enhance the performance stability of photovoltaic modules under UV radiation exposure. Increasing the content of both UVA and HALS improves the performance stability of the modules, reducing short-circuit current loss and yellowing due to UV radiation.
Photovoltaic modules were manufactured by vacuum resin infusion process using glass reinforced epoxy composite as encapsulant where the cells are embedded. Incorporation of ultraviolet absorber (UVA) and hindered amine light stabilizer (HALS) additives to the epoxy resin was studied, given their potential to enhance the performance stability of the modules under ultraviolet (UV) radiation exposure. Photovoltaic and aging performance were examined through the evolution of external quantum efficiency (EQE) spectra, short-circuit current values and colour change. Decrease in the initial photovoltaic performance of the modules was observed, as evidenced in the short-circuit losses when additives are incorporated. Regarding the performance stability, increasing the content of both, UVA and HALS, leaded to improved results with lower short-circuit current loss and yellowness observed due to UV radiation. The most stable module, with cells embedded in 1% UVA and 1% HALS containing composite, showed a 2.8% short-circuit current loss after an UV exposure of 15.4 KWh/m(2). UV protection enhancement was obtained in trade-off with initial photovoltaic performance, which should be considered when defining the additives and the amount to be used.

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