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Quantitative dosing of surfaces with fluorescent molecules: Characterization of fractional monolayer coverages by counting single molecules

机译:使用荧光分子定量定量给料:通过计数单个分子表征单层覆盖率

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Quantitative deposition of dye molecules onto a substrate has been achieved at very low surface concentrations, in the range of 5 x 10(-8)-1 x 10(-6) monolayer, using the technique of controlled substrate withdrawal from solution. These small surface populations were determined with high (greater than or equal to 96%) efficiency by single-molecule counting using an epi-illumination, fluorescence microscope with charge-coupled device detector. The fluorescence imaging resolution (3 sigma) is 0.78 mum; over a uniform excitation area of 67 x 67 mum(2), a large number (> 7500) of spatially resolved channels are available for counting individual molecules. At low coverages, the number density of fluorescence spots on the surface agrees with the expected surface concentration of molecules, based on the concentration of dye in solution and the solution film thickness predicted from theory. When the surface density of molecules is high enough that fluorescence spot overlap is likely to occur within the optical resolution of the instrument, the observed fewer number of spots can be corrected for overlap through a site occupation model based on Poisson statistics.
机译:使用受控的底物从溶液中抽出的技术,可以在非常低的表面浓度(在5 x 10(-8)-1 x 10(-6)单层范围内)将染料分子定量沉积在底物上。使用带有电荷耦合器件检测器的落射照明,荧光显微镜通过单分子计数以高效率(大于或等于96%)确定了这些小的表面种群。荧光成像分辨率(3 sigma)为0.78微米;在67 x 67 mum(2)的均匀激发区域上,大量(> 7500)的空间分辨通道可用于对单个分子进行计数。在低覆盖率下,基于理论上预测的溶液中染料的浓度和溶液膜的厚度,表面上荧光点的数量密度与分子的预期表面浓度一致。当分子的表面密度足够高,以致在仪器的光学分辨率内可能发生荧光斑点重叠时,可以通过基于泊松统计的位点占据模型对观察到的较少数量的斑点进行重叠重叠校正。

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