Gryczynski Ignacy, Malicka Joanna, Nowaczyk Kazimierz, Gryczynski Zygmunt, Lakowicz Joseph R
Center for Fluorescence Spectroscopy, University of Maryland at Baltimore, Department of Biochemistry and Molecular Biology, 725 West Lombard Street, Baltimore, Maryland 21201.
J Phys Chem B. 2004 Aug 12;108(32):12073-12083. doi: 10.1021/jp0312619. Epub 2004 Jul 16.
In recent reports, we demonstrated coupling of excited fluorophores with thin silver or gold films resulting in directional surface plasmon-coupled emission (SPCE) through the silver film and into the glass substrate. In the present report, we describe the spectral and spatial properties of SPCE from sulforhomamine 101 in polyvinyl alcohol (PVA) films of various thicknesses on 50-nm silver films. The PVA thickness varied from about 30 to 750 nm. In thin PVA films with a thickness less than 160 nm, SPCE occurred at a single angle in the glass substrate and displayed only p polarization. As the PVA thickness increased to 300 nm, we observed SPCE at two angles, with different s or p polarization for each angle. For PVA films from 500 to 750 nm thick, we observed SPCE at three or four angles, with alternating s and p polarizations. The multiple rings of SPCE and the unusual s-polarized emission are consistent with the expected waveguide modes in the silver-PVA composite film. However, in contrast to our expectations, the average lifetimes of SPCE were not substantially changed from the PVA films. The observation of SPCE at multiple angles and with different polarization opens new opportunities for the use of SPCE to study anisotropic systems or to develop unique sensing devices.
在最近的报告中,我们展示了激发态荧光团与薄银膜或金膜的耦合,从而通过银膜并进入玻璃基板产生定向表面等离子体耦合发射(SPCE)。在本报告中,我们描述了在50纳米银膜上不同厚度的聚乙烯醇(PVA)薄膜中,磺基罗丹明101的SPCE的光谱和空间特性。PVA的厚度在约30至750纳米之间变化。在厚度小于160纳米的薄PVA薄膜中,SPCE在玻璃基板中的单一角度发生,并且仅显示p偏振。随着PVA厚度增加到300纳米,我们在两个角度观察到SPCE,每个角度具有不同的s或p偏振。对于厚度为500至750纳米的PVA薄膜,我们在三个或四个角度观察到SPCE,具有交替的s和p偏振。SPCE的多个环和不寻常的s偏振发射与银 - PVA复合薄膜中预期的波导模式一致。然而,与我们的预期相反,SPCE的平均寿命与PVA薄膜相比没有实质性变化。在多个角度和不同偏振下观察到SPCE为利用SPCE研究各向异性系统或开发独特的传感装置开辟了新的机会