Method for preparing rare earth fluorescence micro/nano fibers
A micro-nano fiber, rare earth fluorescence technology, applied in the chemical characteristics of fibers, rayon manufacturing, textiles and papermaking, etc., can solve the problems of not too high luminescent material content, poor strength and processing performance, difficult development and application, etc. Avoid the effects of poor environmental stability, easy molding and processing, and light weight
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Embodiment 1
[0014] Weigh 0.352 g Eu 2 o 3 (1 mmol) + 12 ml HCl (excess) to prepare EuCl 3 , and dry it to completely volatilize the hydrochloric acid, the EuCl 3 Dissolve together with 1.081 g of acetylsalicylic acid in 50 g of absolute ethanol, add excess 1.5 g of triethylamine to filter, slowly add 0.404 g of o-phenol Rowling ethanol solution, keep stirring, place for 2 hours for suction filtration, and then use 50 Wash in 1 g of absolute ethanol for 1 hour, suction filter, and dry to obtain a white powdery rare earth complex; then take 0.05 g of rare earth complex and dissolve it in 1.45 g of chloroform, stir and add 2 g of polyphenylene compound with a mass percentage of 25%. The tetrahydrofuran solution of ethylene is prepared into the precursor solution of electrospinning after stirring evenly; the conventional electrospinning method is used for spinning in the air, and the spinning conditions are: voltage 20 kV, nozzle inner diameter 0.42 mm, The distance between the nozzle and ...
Embodiment 2
[0016] According to the method of Example 1, 4 grams of precursor solutions with different mass ratios (rare earth complex: polymer material: 1:160, 1:80, 1:40, 1:10) were prepared respectively, and each Solution is divided into two parts, and a part carries out electrospinning collection fiber according to the condition of embodiment 1, and a part is dropped on the transparent glass sheet, is dried in the air and is prepared into the thin film that thickness is about 200 microns; By fluorescence spectrophotometer (Hitachi F- 4600) scanned the fluorescence spectra of prepared fibers and films with different mass ratios; the results showed that the fluorescence intensity of the micro-nano fiber samples showed a linear increase with the increase of the complex concentration, and the bulk film samples were in rare earth complexes: high The fluorescence quenching phenomenon occurs when the molecular material is about 1:100, such as image 3This is because the dispersion of the rar...
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