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Enhancement of Thermal Lens Signal Intensity from Molecules of Rhodamine 6G Dispersed In Colloidal Silver

机译:从胶体银中分散的罗丹明6g分子的热透镜信号强度的增强

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We report a novel technique to enhance the thermal lens signal intensity by the use of silver nanosol. Thermal lens signal measurements of the laser dye rhodamine 6G dissolved in double distilled water has been carried out using the 532 nm excitation from a Diode pumped solid state (DPSS) laser, both in the presence and absence of silver sol for various concentrations. It has been observed that there is a very noticeable increase in signal intensity when silver nanosol is added to the dye solution. Though the enhancement varies with concentration, it is generally greater than 56 percent. The results presented in this work are of great importance to configuration and optimization of extremely sensitive thermal lens instruments, which is the trend in the development of analytical instruments. We have also carried out the fluorescence quantum yield (Q_f) measurements of the dye using the dual beam thermal lens technique for two different pump powers and observed that at higher pump power there is only about 10% reduction in the quantum yield at low concentration in comparison with about 50% reduction at low pump power. At higher concentrations, the percentage reductions are almost identical in both cases.
机译:我们报告了一种新颖的技术来通过使用银纳米醇来增强热透镜信号强度。使用532nm激发的二极管泵浦固态(DPSS)激光,在存在和不存在各种浓度的情况下,使用532nm激光进行激光染料罗丹明6g的热透镜信号测量。已经观察到,当将银纳米醇加入到染料溶液中时,信号强度存在非常明显的增加。虽然增强随浓度而变化,但通常大于56%。本作工作中提出的结果非常重要,对极其敏感的热镜头仪器进行配置和优化,这是分析仪器开发的趋势。我们还使用双束热透镜技术进行两种不同泵浦功率的荧光量子产率(Q_F)测量,并且观察到在更高的泵浦电力下,在低浓度下,量子产量降低仅约为10%低泵电量减少约50%的比较。在较高浓度下,两种情况下,减少率几乎相同。

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