Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7834553 | Applied Surface Science | 2018 | 31 Pages |
Abstract
We first reported a strategy to prepare functional poly(vinylidene fluoride) (PVDF) membranes with excellent ultraviolet-absorbing property through chemically induced grafting. Herein, the polymerizable ultraviolet (UV) absorber 2-hydroxy-4-(3-methacryloxy-2-hydroxylpropoxy) benzophenone (BPMA) made by ourselves was grafted onto the PVDF chains that have been pretreated with tetraethylammonium hydroxide (TEAH) alkaline solution. Moreover, the effect of experiment conditions such as the alkali and monomer concentrations, alkali treatment time on the UV-absorbing property of the obtained PVDF-g-PBPMA membranes were studied in detail. The chemical structure of the modified membranes was confirmed by 1H NMR, FT-IR and XPS measurements. Meanwhile, the thermal and UV-absorbing properties were characterized by TGA, DSC and UV-Vis spectrophotometer, respectively. The results indicated that BPMA side chains were successfully introduced onto PVDF backbones. Most importantly, the obtained PVDF-g-PBPMA membranes exhibited excellent UV-absorbing property. The transmittance of UV light at 300â¯nm decreased to as low as 0.02% and the UV light below 388â¯nm could be completely absorbed by the PVDF-g-PBPMA membrane made under optimal condition.
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Authors
Li Dong, Xiangdong Liu, Zhengrong Xiong, Dekun Sheng, Changhong Lin, Yan Zhou, Yuming Yang,