Poly(Vinylidene Fluoride-co-Hexafluoropropylene) Films Filled in Iron Nanoparticles for Infrared Shielding Applications.
Marcin KrajewskiAndrzej M WitowskiSz-Chian LiouMichał MajMateusz TokarczykDariusz WasikPublished in: Macromolecular rapid communications (2023)
In order to use the infrared (IR) radiation shielding materials, they should take a form of thin film coatings deposited on glass/polymer substrates or be used as fillers of glass/polymer. The first approach usually suffers from several technological problems. Therefore, the second strategy gains more and more attention. Taking into account this trend, this work presents the usage of iron nanoparticles (Fe NPs) embedded into the poly(vinylidene fluoride-co-hexafluoropropylene) (PVDF-HFP) films as the shielding material in near-infrared (NIR) and mid-infrared (MIR) region. The performed investigations show that the transmittance of copolymer films decreases with increasing content of the Fe NPs inside them. It is found that the average fade of IR transmittance for 1, 2.5, 5, 10, and 50 mg of Fe NPs is about 13%, 24%, 31%, 77%, and 98%, respectively. Moreover, it is observed that the PVDF-HFP films filled in the Fe NPs almost does not reflect the NIR and MIR radiation. Hence, the IR shielding properties of the PVDF-HFP films can be effectively tuned by the addition of proper amount of the Fe NPs. This, in turn, shows that the PVDF-HFP films filled in the Fe NPs constitute a great option for IR antireflective and shielding applications.
Keyphrases
- room temperature
- metal organic framework
- cell proliferation
- oxide nanoparticles
- long non coding rna
- carbon nanotubes
- aqueous solution
- photodynamic therapy
- drinking water
- mental health
- fluorescent probe
- drug release
- visible light
- working memory
- radiation induced
- sensitive detection
- radiation therapy
- living cells
- fluorescence imaging
- single molecule