Ray Krishanu, Badugu Ramachandram, Lakowicz Joseph R
Center for Fluorescence Spectroscopy, University of Maryland School of Medicine, Department of Biochemistry and Molecular Biology, 725 West Lombard Street, Baltimore, Maryland 21201, USA.
J Phys Chem B. 2006 Jul 13;110(27):13499-507. doi: 10.1021/jp0620623.
The metal-enhanced fluorescence (MEF) from the well-organized monolayers of two newly prepared long-chain alkylamine derivatives of nitrobenzoxadiazole (NBD-C16 and NBD-C18) deposited on silver island films (SIFs) has been investigated. The NBD derivatives were conveniently prepared by using a single step procedure in quantitative yields. The monolayers of the probes on SIFs as well as on bare-glass slides were obtained by using the Langmuir-Blodgett (LB) technique. Orientation of the NBD probe molecule in LB monolayer film was measured with polarized absorption spectroscopy. The observed tilt angle of the probe transition dipole moment with respect to the surface normal of approximately 67-68 degrees was evaluated. We observed that the NBD monolayers deposited in close proximity to silver islands show about a 16-fold increase in fluorescence intensity and shortened fluorescence lifetime compared to those on bare-glass, which are due to metal enhanced fluorescence. On the other hand, the corresponding MEF from randomly oriented film obtained by using spin coating of the probes on SIFs was only 2.5-fold. Further, we deposited mixed monolayers of NBD-C16 or NBD-C18 with various molar ratios of stearic acid to understand the polarity effect on MEF. Interestingly, we found a consistent increase in MEF efficiency with increasing molar ratio of stearic acid. Along with MEF, we also found a continuous blue-shift in emission band maxima of the probes with an increasing molar ratio of stearic acid. The observed increase in MEF efficiency is justified based on cooperative effects of (1) the modulations in electronic density of the surface plasmon absorption band of SIFs and (2) defined probe orientation that might lead to preferential excitation.
对两种新制备的硝基苯并恶二唑长链烷基胺衍生物(NBD-C16和NBD-C18)在银岛膜(SIFs)上形成的有序单层的金属增强荧光(MEF)进行了研究。通过一步法以定量产率方便地制备了NBD衍生物。使用朗缪尔-布洛杰特(LB)技术在SIFs以及裸玻片上获得了探针的单层。用偏振吸收光谱法测量了LB单层膜中NBD探针分子的取向。评估了探针跃迁偶极矩相对于表面法线的观察倾斜角约为67 - 68度。我们观察到,与裸玻片上的相比,靠近银岛沉积的NBD单层的荧光强度增加了约16倍,荧光寿命缩短,这是由于金属增强荧光。另一方面,通过将探针旋涂在SIFs上获得的随机取向膜的相应MEF仅为2.5倍。此外,我们沉积了NBD-C16或NBD-C18与不同摩尔比硬脂酸的混合单层,以了解极性对MEF的影响。有趣的是,我们发现随着硬脂酸摩尔比的增加,MEF效率持续增加。除了MEF,我们还发现随着硬脂酸摩尔比的增加,探针发射带最大值持续蓝移。基于(1)SIFs表面等离子体吸收带电子密度的调制和(2)可能导致优先激发的确定探针取向的协同效应,对观察到的MEF效率增加进行了合理说明。