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Enhanced Anti-Ultraviolet and Thermal Stability of a Pesticide via Modification of a Volatile Organic Compound (VOC)-Free Vinyl-Silsesquioxane in Desert Areas

机译:通过在沙漠地区的挥发性有机化合物(VOC) - 完全乙烯基-Silsesquioxane改变挥发性有机化合物(VOC) - 自由乙烯基-Silsesquioxane而增强了农药的抗紫外线和热稳定性

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Due to the effect of severe environmental conditions, such as intense heat, blowing sand, and ultraviolet light, conventional pesticide applications have repeatedly failed to adequately control mosquito and sandfly populations in desert areas. In this study, a vinyl silsesquioxane (VS) was added to a pesticide (citral) to enhance residual, thermal and anti-ultraviolet properties via three double-bond reactions in the presence of an initiator: (1) the connection of VS and citral, (2) a radical self-polymerization of VS and (3) a radical self-polymerization of citral. VS-citral, the expected and main product of the copolymerization of VS and citral, was characterized using standard spectrum techniques. The molecular consequences of the free radical polymerization were analyzed by MALDITOF spectrometry. Anti-ultraviolet and thermal stability properties of the VS-citral system were tested using scanning spectrophotometry (SSP) and thermogravimetric analysis (TGA). The repellency of VS-citral decreased over time, from 97.63% at 0 h to 72.98% at 1 h and 60.0% at 2 h, as did the repellency of citral, from 89.56% at 0 h to 62.73% at 1 h and 50.95% at 2 h.
机译:由于严重的环境条件的影响,如强烈的热,吹沙和紫外线,常规的农药应用一再未能充分控制沙漠地区的蚊子和桑粉群。在该研究中,将乙烯基硅氧烷(Vs)加入到农药(Citral)中,以通过引发剂存在下通过三次双键反应增强残留,热和抗紫外性质:(1)与vs和citral的连接(2)自由基自聚合对Vs和(3)的柠檬酸的自由基自聚合。 VS-CITRAL,VS和CITRAL的共聚的预期和主要产物使用标准频谱技术表征。通过MARDITOF光谱法分析自由基聚合的分子后果。使用扫描分光光度法(SSP)和热重分析(TGA)测试VS-携带体系的抗紫外线和热稳定性。随着时间的推移,VS-CITRAL的排斥力减少,从0小时的97.63%到1小时,60.0%在2小时,柠檬醛的排斥性,从0小时的89.56%到1小时和50.95岁至62.73%。 %在2小时。

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