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Nanocomposites based on highly luminescent nanocrystals and semiconducting conjugated polymer for inkjet printing

机译:基于高发光纳米晶体和半导体共轭聚合物的纳米复合材料,用于喷墨印刷

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In this work nanocomposites based on organic-capped semiconductor nanocrystals formed of a core of CdSe coated with a shell of ZnS (CdSe@ZnS), with different sizes, and a semiconducting conjugated polymer, namely poly[(9,9-dihexylfluoren-2,7-diyl)-alt-(2,5-dimethyl-1,4-phenylene)] (PF-DMB) have been investigated. The nanocomposites are prepared by mixing the pre-synthesized components in organic solvents, thereby assisting the dispersion of the organic-coated nano-objects in the polymer host. UVvis steady state and time-resolved spectroscopy along with (photo)electrochemical techniques have been performed to characterize the obtained materials. The study shows that the embedded nanocrystals increase the PF-DMB stability against oxidation and, at the same time, extend the light harvesting capability to the visible spectral region, thus resulting in detectable photocurrent signals. The nanocomposites have been dispensed by means of a piezo-actuated inkjet system. Such inks present viscosity and surface tension properties well suited for stable and reliable drop-on-demand printing using an inkjet printer. The fabrication of arrays of single-color pixels made of the nanocomposites and micrometers in size has been performed. Confocal and atomic force microscopy have confirmed that inkjet-printed microstructures present the intrinsic emission properties of both the embedded nanocrystals and PF-DMB, resulting in a combined luminescence. Finally, the morphology of the printed pixels is influenced by the embedded nanofillers.
机译:在这项工作中,基于有机封端的半导体纳米晶体的纳米复合材料,该纳米复合材料由CdSe的核形成,该核包覆有大小不同的ZnS壳(CdSe @ ZnS)和一种半导体共轭聚合物,即聚[(9,9-dihexylfluoren-2)已研究了[,7-二基)-alt-(2,5-二甲基-1,4-亚苯基)](PF-DMB)。通过将预合成的组分在有机溶剂中混合来制备纳米复合材料,从而有助于将有机涂覆的纳米物体分散在聚合物主体中。 UVvis稳态和时间分辨光谱以及(光)电化学技术已被用来表征获得的材料。研究表明,嵌入的纳米晶体提高了PF-DMB的抗氧化稳定性,同时将光收集能力扩展到可见光谱区域,从而产生可检测的光电流信号。纳米复合材料已经通过压电致动的喷墨系统分配。这样的油墨具有非常适合用于使用喷墨打印机的稳定和可靠的按需滴印的粘度和表面张力特性。已经完成了由纳米复合材料和微米尺寸的单色像素阵列的制造。共聚焦和原子力显微镜已经证实,喷墨印刷的微观结构呈现出嵌入的纳米晶体和PF-DMB的固有发射特性,从而导致了组合发光。最终,印刷像素的形态会受到嵌入式纳米填料的影响。

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