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Emission enhancement of tris(8-quinolinolato)aluminum with Al nanotriangle arrays fabricated by nanosphere lithography

机译:用纳米光刻制造的Al纳米前阵列的Tris(8-喹啉醇)铝的排放增强

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We report on the enhancement effect of metal nanotriangles (NTs) on the photoluminescence and its timeresolved dynamics of tris(8-quinolinolato) aluminum (Alq(3)). Regularly arranged Al NTs arrays were fabricated on the quartz substrate by means of nanosphere lithography. The absorption peaks corresponded to the localized surface plasmon (LSP) resonance of Al NTs were observed within a visible light region, and it was significantly shifted towards longer wavelength as increasing refractive index of the covering medium. The typical resonance wavelength of LSP of Alq3/Al NTs fabricated with 350 nm-PSt beads was 600 nm. From the PL measurement 2.6-fold PL enhancement was observed in Alq(3) with Al NTs at room temperature, whereas the 4.4-fold PL enhancement was observed for Ag NTs with same size. According to the time-resolved PL data, the coupling of LSP with the excitation light field mainly contribute to the observed emission enhancement for the Al NTs, whereas the emission enhancement by Ag NTs can be originated from the direct coupling of LSP and emission which was suggested from the large contribution of short lifetime component.
机译:我们报告了三(8-喹啉醇)铝的光致发光对光致发光的增强效果及其间歇动态(Alq(3))。通过纳米光学光刻在石英基板上制造定期排列的Al NTS阵列。在可见光区域内观察到与局部表面等离子体(LSP)的局部等离子体(LSP)共振的吸收峰值,并且随着覆盖介质的折射率的增加而显着地朝向较长的波长移位。用350nm-PST珠粒制造的Alq3 / Al NT的LSP的典型共振波长为600nm。从PL测量的PL测量中,在室温下在Alq(3)中观察到2.6折PL增强,而具有相同尺寸的Ag NTS观察到4.4倍的PL增强。根据时间分段的PL数据,LSP与激发光场的耦合主要有助于AL NTS的观察到发射增强,而AG NT的发射增强可以源于LSP和发射的直接耦合建议短暂终身组件的大贡献。

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