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Fluorescence-detected magnetic circular dichroism of fluorescent and nonfluorescent molecules.

机译:荧光检测的荧光和非荧光分子的磁性圆二色性。

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摘要

We have modified a spectrometer for the measurement of fluorescence-detected magnetic (and natural) circular dichroism (FDMCD). The instrument can be operated either in a direct mode in which the average and polarization-induced differential fluorescent intensities are recorded separately or in a mode which records their ratio. We have measured the FDMCD of tryptophan, which is itself fluorescent. With the aid of an added fluorescent molecule we also measured the FDMCD of Fe(III) cytochrome c, which is nonfluorescent. In both cases, the FDMCD agreed with the conventional transmission-detected magnetic circular dichroism within experimental uncertainty. The FDMCD of both fluorescent and nonfluorescent molecules is potentially a useful technique for investigating optically dense materials and biological molecules in their native environments and systems in which there is inter- or intramolecular energy transfer.
机译:我们已经修改了一种光谱仪,用于测量荧光检测的磁性(和自然)圆二色性(FDMCD)。该仪器可以在直接模式下操作,在该模式下分别记录平均和偏振诱导的差分荧光强度,或在一种记录其比率的模式下操作。我们已经测量了色氨酸的FDMCD,色氨酸本身就是荧光的。借助添加的荧光分子,我们还测量了非荧光的Fe(III)细胞色素c的FDMCD。在这两种情况下,FDMCD在实验不确定性范围内均与常规的透射检测的磁性圆二色性相符。荧光和非荧光分子的FDMCD可能是一种有用的技术,可用于研究分子间或分子内能量转移的自然环境和系统中的光密材料和生物分子。

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