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The Improvement of Moisture Resistance and Organic Compatibility of SrAl2O4: Eu2+, Dy3+ Persistent Phosphors Coated with Silica–Polymer Hybrid Shell

机译:涂有二氧化硅 - 聚合物杂交壳的耐湿性和耐湿性和有机相容性的改善

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摘要

The existing road surface marking with poor visibility at night results in traffic safety hazards in insufficient lighting roads. This study aims to prepare the dedicated aluminate-based persistent phosphors considering the integrated pavement environment, as the first step to achieve the durable luminescent road surface marking. SrAl2O4: Eu2+, Dy3+ persistent phosphors coated with silica−polymer hybrid shell were prepared by chemical precipitation and sol-gel method to improve moisture resistance and organic compatibility. The optimum silane coupling agent type and dosage, the surfactant dosage, the optimum sodium silicate dosage, and the coating reaction time in silica shell and polymer shell coating were studied based on the moisture resistance test. The silica−polymer hybrid shell coating balances the organic compatibility and thermal stability as compared to the silica or polymer shell coating in the oil absorption test and thermogravimetric analysis. Ex-Em Spectra, XRD, and SEM method were used to characterize the persistent phosphors, indicating the preparation does not destroy the persistent phosphors. The outstanding durable properties of SrAl2O4: Eu2+, Dy3+ persistent phosphors coated with silica−polymer hybrid shell as shown in this research is crucial for its potential application in waterborne luminescent coatings of road surface marking.
机译:现有的路面标记在夜间可见性差,导致照明道路不足的交通安全危险。本研究旨在考虑综合路面环境的专用铝酸盐基持久性磷光体,作为实现耐用发光路面标记的第一步。 SRAL2O4:EU2 +,通过化学沉淀和溶胶 - 凝胶法制备涂有二氧化硅聚合物杂交壳的DY3 +持续磷光体,以改善防潮性和有机相容性。基于防潮试验,研究了最佳硅烷偶联剂类型和剂量,表面活性剂剂量,最佳硅酸钠剂量和二氧化硅壳和聚合物壳涂层中的涂层反应时间。与油脂或聚合物壳涂层相比,二氧化硅 - 聚合物杂交壳涂料在吸油测试和热重分析中相比,平衡了有机相容性和热稳定性。 EX-EM光谱,XRD和SEM方法用于表征持久荧光体,表明制剂不会破坏持久荧光体。如本研究所示,涂有二氧化硅 - 聚合物杂交壳的SRAL2O4:EU2 +,DY3 +持续磷光体的出色耐用性,这对于其在路面标记的水性发光涂层中的潜在应用至关重要。

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