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首页> 外文期刊>Bulletin of Materials Science >Tuning luminescence intensity of RHO6G dye using silver nanoparticles
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Tuning luminescence intensity of RHO6G dye using silver nanoparticles

机译:使用银纳米粒子调节RHO6G染料的发光强度

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The photoluminescence (PL) from rhodamine (RHO6G) dye dispersed in ethanol has been studied in the presence of different amounts of citrate stabilized silver nanoparticles of size, ∼10 nm. Enhancement as well as quenching of luminescence intensity has been observed and it was found that luminescence intensity can be tuned by adding various amounts of silver nanoparticles to the RHO6G dye dispersion. The luminescence spectra of dye consist of two peaks at 440 nm and 550 nm. Peak at 440 nm shows an enhancement in intensity at all the concentrations of added silver nanoparticles with the maximum intensity for dye with 0.25 ml silver nanoparticles (82% enhancement in the luminescence intensity). PL intensity of intense peak at 550 nm of dye molecules was found to be quenched in presence of silver nanoparticles and maximum quenching was found to be 41% for the dye with 1 ml silver nanoparticles. However, for lowest concentration of silver nanoparticles viz. (0.01 ml), enhancement in intensity was observed (13% enhancement than the dye molecules). The quenching as well as enhancement in the intensity can be understood by considering the possibility of three different phenomena. It has been reported earlier that when metal nanoparticles are in close proximity to the fluorophores, quenching of luminescence occurs, whereas when metal nanoparticles are located at certain distance, enhancement in luminescence is observed. This effect has been explained by coupling of surface plasmon resonance from metal nanoparticles with fluorophore, resulting in the increase of excitation and emission rate of the fluorophore in the localized electromagnetic field. The quenching and enhancement of luminescence intensity of the dye molecules can also be explained as the transfer of electrons from dye to the silver nanoparticles and to an extent it can be attributed to the aggregation of dye molecules upon addition of silver nanoparticles.
机译:在不同量的柠檬酸盐稳定的银纳米颗粒(约10 nm)的存在下,研究了若丹明(RHO6G)染料分散在乙醇中的光致发光(PL)。已经观察到发光强度的增强和猝灭,并且发现可以通过向RHO6G染料分散体中添加各种量的银纳米颗粒来调节发光强度。染料的发光光谱由在440 nm和550 nm处的两个峰组成。 440 nm处的峰显示,在添加的所有纳米银浓度下,强度都有所增强,而染料的最大强度为0.25 ml银纳米颗粒(发光强度提高了82%)。发现在存在银纳米颗粒的情况下,染料分子在550 nm处的强峰的PL强度被淬灭,对于具有1 ml银纳米颗粒的染料,发现最大淬灭率为41%。然而,对于最低浓度的银纳米颗粒,即。 (0.01ml),观察到强度增强(比染料分子增强13%)。通过考虑三种不同现象的可能性,可以理解淬火以及强度的增强。早先已经报道过,当金属纳米颗粒紧邻荧光团时,发生发光猝灭,而当金属纳米颗粒位于一定距离处时,观察到发光增强。通过将金属纳米粒子的表面等离振子共振与荧光团耦合,可以解释这种效应,从而导致局部电磁场中荧光团的激发和发射速率增加。染料分子的发光强度的猝灭和增强也可以解释为电子从染料到银纳米颗粒的转移,并且一定程度上可以归因于加入银纳米颗粒后染料分子的聚集。

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