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Gas-Phase Fluorescence Performance of Two Xanthene Dyes (Rhodamine B and Rhodamine 6G) at atmosphere

机译:大气中两种xAnshe染料(罗丹明B和罗丹明6g)的气相荧光性能

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In the traditional fluorescence detection, samples are tested in the solvent, and the mutual effect of solvent, micro impurity and sample affects the fluorescence characteristics. Meanwhile, such effect includes vibrational relaxation, electron rearrangement of solvent molecule, special role of the sample with the solvent molecules and so on. The experiment of fluorescence quantum efficiency at atmosphere reduces the interference, because the distance between molecules is much larger in gas phase. In addition, the research of quantum efficiency can also promote the understanding of LIF and expand the range. In this paper, the fluorescence quantum efficiency of 3 different samples at atmosphere was compared, and the electrospray ionization source was selected for its soft ionization characteristics. The ionization method did not spoil the fluorophore of the sample, and the drift tube of ion mobility spectrometry (IMS) was used for ions transport and desolvation. The ionization source was on the one side of the drift tube and the test point was on the other side. The paths of excited laser and emission light were orthogonal at the test point. Meanwhile, stable ions flowed through the drift tube. The emission light was captured by the camera, which was coupled with a long-wave pass filter. The test samples were Rhodamine 6G, Rhodamine B and amino copper indium sulfide quantum dots of the same mass fraction. The energy of excited laser was between 30 mW and 150 mW. Then the results showed that the emission intensity was proportional to the laser power in gas phase, and the sort of the fluorescence quantum efficiency was the quantum dots>Rhodamine 6G>Rhodamine B.
机译:在传统的荧光检测中,在溶剂中测试样品,溶剂,微杂质和样品的相互影响影响荧光特性。同时,这种效果包括振动弛豫,电子重排溶剂分子,样品与溶剂分子的特殊作用等。大气中荧光量子效率的实验降低了干扰,因为分子之间的气相距离大得多。此外,量子效率的研究还可以促进对生命的理解并扩大范围。在本文中,比较了3种不同样品的荧光量子效率,选择了电喷雾电离源,用于其软离子化特性。电离方法没有破坏样品的荧光团,并且离子迁移光谱法(IMS)的漂移管用于离子转运和脱溶解。电离源位于漂移管的一侧,并且测试点位于另一侧。激发激光和发射光的路径在测试点处正交。同时,稳定的离子流过漂移管。通过相机捕获发射光,其与长波通过过滤器耦合。测试样品是罗丹明6g,罗丹明B和氨基铜铟硫化物量子点的相同质量分数。激发激光的能量在30mW和150兆瓦之间。然后结果表明,发射强度与气相中的激光功率成比例,荧光量子效率的种类是量子点>罗丹明6g>罗丹明B.

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