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Preparation and luminescence performance of rare earth agriculture-used light transformation composites

机译:稀土农业用光变复合材料的制备及发光性能

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Rare earth elements (REEs) and their composites could promote the growth of agricultural products, which, hence, have been widely used in farms as an important trace fertilizer, especially in China. In this work, two kinds of rare earth organic complex europium-salicylic acid-[1,10-phenanthroline] (Eu(Sal)3Phen) and praseodymium-salicylic acid-[1,10-phenanthroline] (Pr(Sal)3Phen) were synthesized first. Then we prepared the Eu,Pr(Sal)3Phen/LLDPE composites by adding Eu(Sal)3Phen and Pr(Sal)3Phen (with a weight ratio of Eu(Sal)3Phen: Pr(Sal)3Phen = 1:1) into the linear low-density polyethylene (LLDPE) matrix by mechanical mixing. The experiments of fluorescent properties showed that the composites can absorb ultraviolet light (UV) (wavelength range of 200–400 nm) and can emit red-orange light (wavelength range of 600–680 nm), which is necessary light source for growth crop. The fluorescent properties of Eu,Pr(Sal)3Phen treated for different time at 160 °C and treated for 10 min at different temperatures have been tested. It has been found that the fluorescent intensity of the Eu,Pr(Sal)3Phen reduced with the increase of treated time and treated temperature. Furthermore, the fluorescent properties of Eu,Pr(Sal)3Phen/LLDPE composites placed at room temperature for different time have been analyzed. It has been proved that the decrease in the fluorescent intensity of the Eu,Pr(Sal)3Phen/LLDPE composites is not evident within 3 months. Therefore, these composites meet the requirements of growth crop in one quarter, sufficiently.
机译:稀土元素(REEs)及其复合物可以促进农产品的生长,因此,作为重要的微量肥料已在农场中广泛使用,尤其是在中国。在这项工作中,两种稀土有机络合物euro-水杨酸-[1,10-菲咯啉](Eu(Sal) 3 Phen)和-水杨酸-[1,10-菲咯啉](Pr(Sal) 3 Phen)首先被合成。然后我们通过添加Eu(Sal) 3 Phen和Pr(Sal) 3 制备Eu,Pr(Sal) 3 Phen / LLDPE复合材料苯(以Eu(Sal) 3 Phen:Pr(Sal) 3 Phen = 1:1的重量比)进入线性低密度聚乙烯(LLDPE)基质通过机械混合。荧光性质的实验表明,该复合材料可以吸收紫外线(UV)(波长范围为200–400 nm),并且可以发出橘红色的光(波长范围为600–680 nm),这是生长作物的必需光源。测试了Eu,Pr(Sal) 3 Phen在160°C的不同时间和在不同的温度下处理10 min的荧光性质。研究发现,Eu,Pr(Sal) 3 Phen的荧光强度随着处理时间和温度的升高而降低。此外,分析了在室温下放置不同时间的Eu,Pr(Sal) 3 Phen / LLDPE复合材料的荧光性能。已经证明,Eu,Pr(Sal) 3 Phen / LLDPE复合材料的荧光强度在3个月内没有明显下降。因此,这些复合材料足以满足四分之一的生长作物的需求。

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