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Color control in coaxial two-luminophore nanowires

机译:同轴双发光体纳米线的颜色控制

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We report a general and simple approach to take control of the color of light-emitting two-luminophore hybrid nanowires (NWs). Our strategy is based on the spatial control at the nanoscale (coaxial geometry) and the spectral selection of the two kinds of luminophores in order to restrict complex charge and energy transfers. Thus, it is possible to control the color of the photoluminescence (PL) as an interpolation of the CIE (Commission Internationale de l'Eclairage) coordinates of each luminophore. For this purpose, we selected a green-emitting semiconducting polymer and a red-emitting hexanuclear metal cluster compound, (n-Bu_4N)_2Mo_6Br _8F_6, dispersed in a poly(methyl-methacrylate) (PMMA) matrix. The great potential and the versatility of this strategy have been demonstrated for two configurations. First, a yellow PL with a continuous change along the nanowire has been evidenced when the proportion of the PPV shell versus the nanocomposite core, that is, the green/red volumic ratio, progressively shifts from 1:2 to 1:5. Second, an extremely abrupt change in the PL color with red-green-yellow segments has been achieved. A simple model corroborates the effectiveness of this strategy. PL excitation and time-resolved experiments also confirm that no significant charge and energy transfers are involved. The two-luminophore hybrid nanowires may find widespread nanophotonic applications in multicolor emitting sources, lasers and chemical and biological sensors.
机译:我们报告了一种通用且简单的方法来控制发光的两个发光体混合纳米线(NWs)的颜色。我们的策略是基于纳米级的空间控制(同轴几何)和两种发光体的光谱选择,以限制复杂的电荷和能量转移。因此,可以控制光致发光(PL)的颜色,作为每个发光体的CIE(国际照明委员会)坐标的内插。为此,我们选择了绿色发光半导体聚合物和红色发光六核金属簇化合物(n-Bu_4N)_2Mo_6Br_8F_6,它们分散在聚甲基丙烯酸甲酯(PMMA)基质中。这种策略的巨大潜力和多功能性已在两种配置中得到了证明。首先,当PPV壳层与纳米复合材料核的比例(即绿色/红色体积比)从1:2逐渐变为1:5时,已经证明了沿着纳米线连续变化的黄色PL。其次,已经实现了具有红绿黄段的PL颜色的急剧变化。一个简单的模型证实了该策略的有效性。 PL激发和时间分辨实验也证实不涉及显着的电荷和能量转移。两荧光团混合纳米线可能会在多色发射源,激光以及化学和生物传感器中找到广泛的纳米光子应用。

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