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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Reevaluation of absolute luminescence quantum yields of standard solutions using a spectrometer with an integrating sphere and a back-thinned CCD detector
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Reevaluation of absolute luminescence quantum yields of standard solutions using a spectrometer with an integrating sphere and a back-thinned CCD detector

机译:使用带积分球和后减薄CCD检测器的光谱仪重新评估标准溶液的绝对发光量子产率

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We reevaluate the absolute fluorescence and phosphorescence quantum yields of standard solutions by using a novel instrument developed for measuring the absolute emission quantum yields of solutions. The instrument consists of an integrating sphere equipped with a monochromatized Xe arc lamp as the light source and a multichannel spectrometer. By using a back-thinned CCD (BT-CCD) as the detector, the sensitivity for spectral detection in both the short and long wavelength regions is greatly improved compared with that of an optical detection system that uses a conventional photodetector. Using this instrument, we reevaluate the absolute fluorescence quantum yields (Φ_f) of some commonly used fluorescence standard solutions by taking into account the effect of reabsorption/reemission. The value of Φ_f for 5 x 10~(-3) M quinine bisulfate in 1 N H2SO4 is measured to be 0.52, which is in good agreement with the value (0.508) obtained by Melhuish by using a modified Vavilov method. In contrast, the value of Φ_f for 1.0 x 10~(-5) M quinine bisulfate in 1 N H2SO4, which is one of the most commonly used standards in quantum yield measurements based on the relative method, is measured to be 0.60. This value is significantly larger than Melhuish's value (0.546), which was estimated by extrapolating the value of Φ_f for 5 x 10~(-3) M quinine bisulfate solution to infinite dilution using the self-quenching constant. The fluorescence quantum yield of 9,10-diphenylanthracene in cyclohexane is measured to be 0.97. This system can also be used to determine the phosphorescence quantum yields (Φ_p) of metal complexes that emit phosphorescence in the near-infrared region: the values of Φ_p for [Ru(bpy)3]~(2+) (bpy = 2,2'-bipyridine) are estimated to be 0.063 in water and 0.095 in acetonitrile under deaerated conditions at 298 K, while that in aerated water, which is frequently used as a luminescent reference in biological studies, is reevaluated to be 0.040.
机译:我们使用开发用于测量溶液绝对发射量子产率的新型仪器,重新评估标准溶液的绝对荧光和磷光量子产率。该仪器由一个配备有单色Xe弧光灯作为光源的积分球和一个多通道光谱仪组成。与使用常规光电检测器的光学检测系统相比,通过使用背面变薄的CCD(BT-CCD)作为检测器,可以大大提高短波长和长波长区域光谱检测的灵敏度。使用该仪器,我们考虑到重吸收/释放的影响,重新评估了一些常用荧光标准溶液的绝对荧光量子产率(Φ_f)。测量在1 N H2SO4中5 x 10〜(-3)M奎宁硫酸氢盐的Φ_f值为0.52,这与Melhuish使用改进的Vavilov方法获得的值(0.508)非常吻合。相反,在基于相对方法的量子产率测量中最常用的标准之一的1 N H2SO4中,1.0 x 10〜(-5)M奎宁硫酸氢盐的Φ_f值为0.60。该值明显大于Melhuish的值(0.546),该值是通过使用自猝灭常数将5 x 10〜(-3)M奎宁硫酸氢盐溶液的Φ_f值外推至无限稀释而估算的。经测定,在环己烷中9,10-二苯基蒽的荧光量子产率为0.97。该系统还可用于确定在近红外区域发出磷光的金属配合物的磷光量子产率(Φ_p):[Ru(bpy)3]〜(2+)的Φ_p值(bpy = 2,在298 K的脱气条件下,水中的2'-联吡啶(2'-联吡啶)估计为0.063,乙腈中的估计值为0.095,而在生物学研究中经常用作发光参考的充气水中的2'-联吡啶估计为0.040。

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