Biodegradable rare-earth fluorescent film taking polyhydroxybutyrate as matrix as well as preparation method and application of biodegradable rare-earth fluorescent film
A polyhydroxybutyrate, biodegradable technology, used in chemical instruments and methods, luminescent materials, plant protection covers, etc., can solve the problems of poor light energy conversion efficiency, non-degradability, and unsustainability, and achieve thermal stability. Good performance, low cost, and solving unsustainable effects
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example 1
[0033] The following method is used to prepare the biodegradable rare earth fluorescent film with polyhydroxybutyrate as the matrix:
[0034] 1) Accurately weigh 0.0025g Eu(TTA) 2 TPY-OCH 3 Add to the beaker, then measure 3mL of THF into the beaker, stir at room temperature until Eu(TTA) 2 TPY-OCH 3 Completely dissolve, forming Eu(TTA) with a mass fraction of 0.094% 2 TPY-OCH 3 Transparent solution, spare;
[0035] 2) Weigh 0.2496g of PHB into the beaker, then measure 50mL of dichloromethane into the beaker, stir at room temperature until the PHB is completely dissolved and form a PHB solution with a mass fraction of 0.375% for use;
[0036] 3) Pour the above two solutions into the reaction flask and stir at room temperature to obtain a transparent mixed solution;
[0037] 4) Use a dropper to drop the above mixed solution into an evaporating dish, cover the surface with a fresh-keeping film with holes, let the solution evaporate at room temperature for 8 hours, after the solvent is com...
example 2
[0040] The following method is used to prepare the biodegradable rare earth fluorescent film with polyhydroxybutyrate as the matrix:
[0041] 1) Accurately weigh 0.0125g of Eu (TTA) 2 TPY-OCH 3 Add to the beaker, then measure 4mL of THF into the beaker, stir at room temperature until Eu(TTA) 2 TPY-OCH 3 Completely dissolve to form Eu(TTA) with a mass fraction of 0.351% 2 TPY-OCH 3 Transparent solution, spare;
[0042] 2) Weigh 0.2529g of PHB into the beaker, then measure 50mL of dichloromethane and pour into the beaker, stir at room temperature until the PHB is completely dissolved and form a PHB solution with a mass fraction of 0.380%, ready for use;
[0043] 3) Pour the above two solutions into the reaction flask and stir at room temperature to obtain a transparent mixed solution;
[0044] 4) Drop the above mixed solution into an evaporating dish with a dropper, cover the surface with a fresh-keeping film with holes, and let the solution evaporate at room temperature for 18 hours. Af...
example 3
[0047] The following method is used to prepare the biodegradable rare earth fluorescent film with polyhydroxybutyrate as the matrix:
[0048] 1) Accurately weigh 0.0172g of Eu (TTA) 2 TPY-OCH 3 Add to the beaker, then measure 5mL of THF into the beaker, stir at room temperature until Eu(TTA) 2 TPY-OCH 3 Completely dissolved, forming Eu(TTA) with a mass fraction of 0.386% 2 TPY-OCH 3 Transparent solution, spare;
[0049] 2) Weigh 0.2532g of PHB into the beaker, then measure 50mL of dichloromethane and pour into the beaker, stir at room temperature until the PHB is completely dissolved and form a PHB solution with a mass fraction of 0.380%, ready for use;
[0050] 3) Pour the above two solutions into the reaction flask and stir at room temperature to obtain a transparent mixed solution;
[0051] 4) Use a dropper to drop the above mixed solution into an evaporating dish, cover the surface with a fresh-keeping film with holes, and let the solution evaporate at room temperature for 24 hours...
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