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首页> 外文期刊>Journal of Materials Science >Singlet oxygen generation properties of Fe-OCAP and its influence on the antibacterial and mechanical properties of Fe-OCAP/PU blends
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Singlet oxygen generation properties of Fe-OCAP and its influence on the antibacterial and mechanical properties of Fe-OCAP/PU blends

机译:Fe-OCAP的单重态氧生成特性及其对Fe-OCAP / PU共混物的抗菌和力学性能的影响

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In this paper, the singlet oxygen generation properties of Fe-octacarboxyl acid phthalocyanine (Fe- OCAP)/polyurethane (PU) blends were investigated by ultraviolet-visible spectra. 1,3-diphenylisobenzofuran was used as the reaction substrate to detect the yields of the singlet oxygen of the samples. It was found that Fe-OCAP showed a high efficiency in generating singlet oxygen when it was dissolved in dimethylacetamide (DMAc), while no singlet oxygen was generated when it was in ethanol. The singlet oxygen generation properties of Fe- OCAP/PU blends were also investigated. It was found that with increasing Fe-OCAP content, Fe-OCAP/PU blends showed increased efficiency in generating singlet oxygen. The influence of wavelength of light on the singlet oxygen generation of Fe-OCAP/PU was studied. Compared with orange light, Fe-OCAP/PU had a higher efficiency in generating singlet oxygen under the illumination of red light. The generated singlet oxygen by Fe-OCAP/PU blends had a high efficiency in cell inactivation. As a result, the percentage bacterial reduction of the samples increased with increasing Fe-OCAP content. The influence of the generated singlet oxygen on the mechanical properties of PU was also investigated. The generated singlet oxygen could initiate the oxidation of PU chain and cause the degradation of PU. Therefore, after illuminated by white light, the tensile strength of the samples containing Fe- OCAP decreased, but still was higher than that of pure PU.
机译:本文通过紫外-可见光谱研究了Fe-八羧酸酞菁(Fe-OCAP)/聚氨酯(PU)共混物的单线态氧生成特性。将1,3-二苯基异苯并呋喃用作反应底物以检测样品的单重态氧的产率。发现Fe-OCAP溶解在二甲基乙酰胺(DMAc)中时显示出高效率的单线态氧,而在乙醇中则不产生单线态氧。还研究了Fe-OCAP / PU共混物的单线态氧生成特性。发现随着Fe-OCAP含量的增加,Fe-OCAP / PU共混物显示产生单线态氧的效率提高。研究了光的波长对Fe-OCAP / PU单线态氧生成的影响。与橙光相比,Fe-OCAP / PU在红光照射下产生单线态氧的效率更高。 Fe-OCAP / PU共混物产生的单线态氧在细胞失活方面具有很高的效率。结果,样品中细菌减少的百分比随Fe-OCAP含量的增加而增加。还研究了产生的单线态氧对PU力学性能的影响。产生的单线态氧可引发PU链的氧化并导致PU降解。因此,在被白光照射后,含Fe-OCAP的样品的拉伸强度下降,但仍高于纯PU。

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