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Water induced protonation of amine-terminated micelles for direct syntheses of ZnO quantum dots and their cytotoxicity towards cancer

机译:水amine-terminated诱导质子化作用胶束直接合成的氧化锌量子点对癌症和细胞毒性

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This work designs a new strategy for the direct synthesis of different zinc oxide (ZnO) nanostructures at low temperatures. Micelles of dodecylamine (DDA) assembled in an ethanol-water system have been explored as a template to direct the growth of the ZnO nanostructures. The key species for the formation of the ZnO nanostructures, OH , can be provided by the water-induced protonation of DDA. The pH of the reaction micro-environment can be regulated by changing the input amount of water and DDA. By controlling the reaction temperature and pH, various ZnO nanostructures, i.e. quantum dots with green or yellow-green emissions, have been prepared. The relationship of the optical properties and the synthetic conditions has been further discussed. This strategy realizes the convenient preparation of ZnO QDs, indicating the potential prospects in the nanotechnology field for their low-cost synthesis. Meanwhile, the cellular toxicity study of ZnO nanoparticles toward cancer cells, including leukemia K562 and K.562/A02 cells as well as HepG2 cells, indicates a selective cytotoxic effect of ZnO QDs against a broad range of human cancer cell lines.
机译:这项工作直接设计一个新的策略合成不同的氧化锌(氧化锌)纳米结构在低温下。材料(DDA)聚集在一个包裹系统探索作为模板,直接氧化锌纳米结构的生长。物种形成的氧化锌纳米结构,可以提供的water-induced银两的质子化作用。可以由反应微环境改变水的输入量和银两。控制反应温度和pH值,各种氧化锌纳米结构,即量子点排放,绿色或黄绿色准备。属性和合成条件进一步的讨论。方便的量子点制备氧化锌,指示潜在的纳米技术领域的前景低成本的合成。氧化锌纳米颗粒的细胞毒性研究对肿瘤细胞,包括白血病K562和K.562 / A02细胞HepG2细胞,表明选择性氧化锌量子点的细胞毒性的影响广泛的人类癌症细胞系。

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