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Synthesis and Characterization of Copper(Ⅰ) Oxide and Zinc Oxide Quantum Dot Materials and the Development of New Fluorescent Fibre Composites

机译:氧化铜(Ⅰ)和氧化锌量子点材料的合成,表征及新型荧光纤维复合材料的开发

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New fluorescent composites of Cu_2O and ZnO quantum dots with wool and paper fibres for potential use in tuneable photoluminescent coloured textiles and packaging and labelling papers, have been developed. Cu_2O quantum dots were synthesised by a wet chemical method to produce nanocubes of about 100 nm in size comprising an assemblage of small spherical nanocrystals (5 nm) with a super lattice structure. A sol-gel method was developed to synthesise ZnO quantum dots as polycrystalline particles SO - 300 nm in size, similarly comprising agglomerations of small 10-12 nm spherical and ellipsoidal nanocrystals. ZnO quantum dot composites with wool and paper fibres were prepared by forming the quantum dots in the chemical medium surrounding the fibres and utilising cross linking reactions to bind them to the wool fibres. When 8-Hydroxyquinoline was used as a linker, it influenced and enhanced the photoluminescence properties of the ZnO wool and paper fibre composites significantly.
机译:已经开发出新型的Cu_2O和ZnO量子点与羊毛和纸纤维的荧光复合材料,这些材料可用于可调谐的光致发光彩色纺织品以及包装和标签纸。通过湿化学方法合成Cu_2O量子点,以产生约100nm大小的纳米立方体,其包括具有超晶格结构的小球形纳米晶体(5nm)的集合。开发了溶胶-凝胶法以合成尺寸为SO-300 nm的多晶颗粒的ZnO量子点,同样包含10-12 nm小球形和椭圆形纳米晶体的团聚体。通过在围绕纤维的化学介质中形成量子点并利用交联反应将其结合到羊毛纤维上来制备具有羊毛和纸纤维的ZnO量子点复合材料。当8-羟基喹啉用作连接基时,它显着影响并增强了ZnO羊毛和纸纤维复合材料的光致发光性能。

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