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Effects of Exposure to Semiconductor Nanoparticles on Aquatic Organisms

机译:暴露于半导体纳米粒子对水生生物的影响

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摘要

Because of their unique physical, optical, and mechanical properties, nanomaterials hold great promise in improving on a wide variety of current technologies. Consequently, their use in research and consumer products is increasing rapidly, and contamination of the environment with various nanomaterials seems inevitable. Because surface waters receive pollutants and contaminants from many sources including nanoparticles and act as reservoirs and conduits for many environmental contaminants, understanding the potential impacts of nanoparticles on the organisms within these environments is critical to evaluating their potential toxicity. While there is much to be learned about interactions between nanomaterials and aquatic systems, there have been a number of recent reports of interactions of quantum dots (QDs) with aquatic environments and aquatic organisms. This review is focused on providing a summary of recent work investigating the impacts of quantum dots on aquatic organisms.
机译:由于其独特的物理,光学和机械性能,纳米材料在改进多种当前技术方面具有广阔的前景。因此,它们在研究和消费产品中的使用正在迅速增加,并且各种纳米材料对环境的污染似乎是不可避免的。由于地表水会从包括纳米颗粒在内的许多来源接收污染物和污染物,并充当许多环境污染物的储存库和管道,因此了解纳米颗粒对这些环境中生物的潜在影响对于评估其潜在毒性至关重要。尽管关于纳米材料与水生系统之间的相互作用有许多知识要学习,但最近有许多关于量子点(QD)与水生环境和水生生物之间相互作用的报道。这篇综述的重点是提供有关量子点对水生生物影响的最新研究的摘要。

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