4.7 Article

One-Step Synthesis of Eu3+-Modified Cellulose Acetate Film and Light Conversion Mechanism

期刊

POLYMERS
卷 13, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/polym13010113

关键词

light conversion film; cellulose acetate; europium; sensitization

资金

  1. National Natural Science Foundation of China [31770593]
  2. China Postdoctoral Science Foundation [160750]
  3. National College Student Innovation and Entrepreneurship Training Program, Northeast Forestry University, China [201910225481]

向作者/读者索取更多资源

A CA-Eu(III) complex was synthesized through coordination reaction of cellulose acetate (CA) and Eu3+, which was further doped with Tb(III) to enhance Eu3+ luminescence and functionalize the CA film. The best fluorescence performance was achieved at a CA: Eu3+ ratio of 3:1 with a reaction time of 65 min. The light conversion film showed high transparency, tensile strength, and flexibility, converting harmful UV light to beneficial red light for photosynthesis in plants.
A CA-Eu(III) complex was synthesized by the coordination reaction of cellulose acetate (CA) and Eu3+ to obtain a CA-Eu light conversion film. This product was then doped with Tb(III) to sensitize the luminescence of Eu3+, which could functionalize the CA film. FTIR and XPS showed that the oxygen atoms in C=O, C-O (O=C-O), and O-H were involved in the complexation with Eu3+ and formed a Eu-O bond. SEM revealed that Eu3+ filled in the pores of the CA film. By changing the experimental conditions, the best fluorescence performance was obtained at the CA: Eu3+ ratio of 3:1 with a reaction time of 65 min. The energy transfer between Tb3+-Eu3+ could be realized by doping Tb3+ to enhance the luminescence of Eu3+. The best fluorescence performance of the CA-Eu-Tb light conversion film was at a Eu3+:Tb3+ ratio of 3:1. Compared with the CA film, the light conversion film has high transparency, high tensile strength, and good flexibility. It can convert the ultraviolet light harmful to plants into red light that is beneficial to photosynthesis. This offers high efficiency and environmental protection in the field of agricultural films.

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