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Simultaneous All-Optical Determination of Molecular Concentration and Extinction Coefficient

机译:同时光学测定分子浓度和消光系数

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Absolute molecular number concentration and extinction coefficient are simultaneously determined from linear and nonlinear spectroscopic measurements. This method is based on measurements of absolute femtosecond pump-probe signals. Accounting for pulse propagation, we present a closed form expression for molecular number concentration in terms of absorbance, fluorescence, absolute pump-probe signal, and laser pulse parameters (pulse energy, spectrum, and spatial intensity profile); all quantities are measured optically. As in gravimetric and coulometric determinations of concentration, no standard samples are needed for calibration. The extinction coefficient can then be determined from the absorbance spectrum and the concentration. For fluorescein in basic methanol, the optically determined molar concentrations and extinction coefficients match gravimetric determinations to within 10% for concentrations from 0.032 to 0.540 mM, corresponding to absorbance from 0.06 to 1. In principle, this photonumeric method is extensible to transient chemical species for which other methods are not available.
机译:绝对分子数浓度和消光系数由线性和非线性光谱测量同时确定。此方法基于绝对飞秒泵浦探测信号的测量。考虑到脉冲传播,我们以吸光度,荧光,绝对泵浦信号和激光脉冲参数(脉冲能量,光谱和空间强度分布图)表示分子浓度的闭合形式。所有数量均以光学方式测量。与重量法和库仑法测定浓度一样,不需要标准样品进行校准。然后可以从吸收光谱和浓度确定消光系数。对于碱性甲醇中的荧光素,对于0.032至0.540 mM的浓度,光学确定的摩尔浓度和消光系数与重量分析法相匹配,误差在10%以内,对应于0.06至1的吸光度。原则上,这种光数字方法可扩展为瞬态化学物种还有哪些其他方法不可用。

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