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低温下菠菜叶绿体中激子猝灭和激子分布的皮秒和微秒脉冲激光研究

Picosecond and microsecond pulse laser studies of exciton quenching and exciton distribution in spinach chloroplasts at low temperatures.

作者信息

Geacintov N E, Breton J, Swenberg C, Campillo A J, Hyer R C, Shapiro S L

出版信息

Biochim Biophys Acta. 1977 Aug 10;461(2):306-12. doi: 10.1016/0005-2728(77)90180-3.

Abstract

Studies of the fluorescence quantum yield and decay times, determined at the emission maxima of 685 and 735 nm, using picosecond laser pulses for excitation, indicate that the pigments which are responsible for the 735 nm emission derive their energy by transfer of singlet excitons from the light-harvesting pigments and not by direct absorption of photons. Microsecond pulse laser studies of the fluorescence quantum yields at these two fluorescence wavelengths indicate that long lived quenchers (most probably triplet states), which quench singlet excitions, accumulate preferentially within the long wavelength pigment system which gives rise to the 735 nm emission band.

摘要

利用皮秒激光脉冲进行激发,在685和735纳米发射最大值处测定的荧光量子产率和衰减时间的研究表明,负责735纳米发射的色素通过单线态激子从光捕获色素转移获得能量,而非通过直接吸收光子。对这两个荧光波长处的荧光量子产率进行的微秒脉冲激光研究表明,淬灭单线态激子的长寿命猝灭剂(很可能是三线态)优先在产生735纳米发射带的长波长色素系统内积累。

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