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Influence of modification of Ti3C2 MXene with ceramic oxide and noble metal nanoparticles on its antimicrobial properties and ecotoxicity towards selected algae and higher plants

机译:陶瓷氧化物和贵金属纳米粒子对Ti3C2 MXene的改性对其抗菌性能和对某些藻类和高等植物的生态毒性的影响

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The number of investigations regarding the application of 2D nanosheets of MXenes in different technological areas is growing rapidly. Different surface modifications of MXenes have been introduced to date in order to tailor their properties. As a result, surface-modified MXenes could be released in the environment from filtration membranes, adsorbents, or photocatalysts. On the other hand, assessment of their environmental impact is practically unexplored. In the present study, we examined how modification of the antimicrobial Ti _(3) C _(2) MXene with ceramic oxide and noble metal nanoparticles affects its toxic behavior. The expanded 2D sheets of the Ti _(3) C _(2) MXene phase were modified with Al _(2) O _(3) /Ag, SiO _(2) /Ag, and SiO _(2) /Pd nanoparticles using the sol–gel method and extensively characterized. The obtained 2D nanocomposite structures were characterized by antibacterial properties. The ecotoxicological assays considered green algae ( Desmodesmus quadricauda ) as well as two higher plants: sorghum ( Sorghum saccharatum ) and charlock ( Sinapis alba ). Our results revealed that obtained nanomaterials can cause both stimulating and inhibiting effects towards algae, and the ecotoxicity depended on the concentration and the type of modification. The study reveals the intriguing property of pristine Ti _(3) C _(2) which highly stimulated green algae growth at low concentrations. It also shows that modification of pristine Ti _(3) C _(2) MXene with different nanoparticles changes the ecotoxicological effects of the resulting nanocomposite 2D structures. We have also indicated nanocomposite structures that does not revealed the toxic effect on tested organisms i.e. the Ti _(3) C _(2) MXene surface-modified with Al _(2) O _(3) /Ag was not phyto- and eco-toxic. This work helps with better understanding of the reactivity of surface-modified MXenes towards chosen organisms, giving more information concerning the potential impact of tested nanocomposites on the ecosystems.
机译:关于MXene的2D纳米片在不同技术领域中的应用的研究数量正在迅速增长。迄今为止,已经引入了MXene的不同表面改性,以调整其性能。结果,表面改性的MXenes可能会从过滤膜,吸附剂或光催化剂释放到环境中。另一方面,对它们的环境影响的评估实际上还没有进行。在本研究中,我们研究了用陶瓷氧化物和贵金属纳米粒子对抗菌剂Ti _(3)C _(2)MXene的改性如何影响其毒性行为。用Al _(2)O _(3)/ Ag,SiO _(2)/ Ag和SiO _(2)/ Pd改性Ti _(3)C _(2)MXene相的扩展二维片材纳米粒子使用溶胶-凝胶法并得到广泛表征。所获得的二维纳米复合结构具有抗菌特性。生态毒理学测定法考虑了绿藻(Desmodesmus quadricauda)以及两种高等植物:高粱(Sorghum saccharatum)和夏洛克(Sinapis alba)。我们的结果表明,所获得的纳米材料可以对藻类产生刺激和抑制作用,而生态毒性取决于浓度和修饰类型。该研究揭示了原始的Ti _(3)C _(2)的迷人特性,该特性在低浓度下可高度刺激绿藻的生长。它还表明,用不同的纳米粒子修饰原始的Ti _(3)C _(2)MXene会改变所得纳米复合材料2D结构的生态毒理作用。我们还表明了纳米复合结构,该结构没有揭示对被测生物的毒性作用,即用Al _(2)O _(3)/ Ag表面修饰的Ti _(3)C _(2)MXene不是植物来源的,生态毒性。这项工作有助于更好地了解表面修饰的MXene对选定生物的反应性,从而提供有关经测试的纳米复合物对生态系统潜在影响的更多信息。

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