Abstract
Abstract This paper presents the development of a luminescent waterproofing membrane using strontium aluminate doped with europium and dysprosium (SrAl2O4:Eu2+,Dy3+), aimed at sustainable applications in signaling and energy efficiency in civil construction. Samples containing 20%, 30%, and 40% of phosphorescent powder were prepared and analyzed for workability, light emission, and physicochemical properties. The 40% sample showed the highest quantum yield (63%) and residual emission lasting up to 810 s, evidencing the role of Dy3+ ions in forming electronic traps and prolonging the emission. The increase in phosphorescent content compromised workability, requiring formulation adjustments. The results indicate the potential of the material for use in low-light environments, such as escape routes and safety signage.
Keywords:
phosphorescence; photoluminescence; strontium aluminate; civil construction; waterproofing membrane
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