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Comparison of TiO2 nanoparticle and graphene–TiO2 nanoparticle composite phototoxicity to Daphnia magna and Oryzias latipes

机译:TiO2纳米粒子和石墨烯-TiO2纳米粒子复合光毒性对Daphnia Magna和Oryzias LaTipes的比较

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摘要

With a dramatic rise in complexity, needs of nanotoxicology research go beyond simple forms of nanomaterials. This study compared the phototoxicity of nano-TiO2 and graphene–TiO2 nanocomposite (GNP). GNP was synthesized based on a hydrothermal method, which simultaneously performed the reduction of graphene oxide and nano-TiO2 loading. A series of acute toxicity tests of nano-TiO2, graphene and GNP was performed on two aquatic organisms, Daphnia magna and Oryzias latipes. Fast and substantial agglomeration and sedimentation of nanoparticles in test media and surface attachment of nano-TiO2 and GNP on D. magna surface was observed. Similar phototoxicity of nano-TiO2 andGNPfor both species existed, though compared with nano-TiO2, GNP had a 2.3-fold increase in visible light photocatalytic ROS generation. In summary, this study demonstrated the significance of illumination spectrum, particle behavior, and species sensitivity on nanophototoxicity, and the needs for research on increasingly sophisticated functional materials.
机译:随着复杂度急剧上升,纳米毒理学研究需要超越纳米材料的简单形式。这项研究比较了纳米二氧化钛的光毒性和石墨烯纳米二氧化钛(GNP)。 GNP是基于水热方法,该方法同时进行氧化石墨烯和纳米二氧化钛加载的还原合成。在两种水生生物,水蚤和青鳉进行一系列纳米二氧化钛,石墨烯和GNP的急性毒性试验。观察到快速和大量的附聚和在试验介质和D.蚤表面纳米二氧化钛和GNP的表面附着的纳米颗粒的沉降。纳米二氧化钛andGNPfor这两个物种的类似光毒性存在,虽然纳米TiO2相比,国民生产总值曾在可见光光催化活性氧产生2.3倍的增加。总之,本研究证实照明光谱,粒子的行为,和物种灵敏度的上nanophototoxicity的意义,以及日益复杂的功能材料用于研究的需要。

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