首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Time-resolved methods in biophysics. 7. Photon counting vs. analog time-resolved singlet oxygen phosphorescence detection
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Time-resolved methods in biophysics. 7. Photon counting vs. analog time-resolved singlet oxygen phosphorescence detection

机译:生物物理学中的时间分辨方法。 7.光子计数与模拟时间分辨单线态氧磷光检测

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摘要

Two recent advances in optoelectronics, namely novel near-IR sensitive photomultipliers and inexpensive yet powerful diode-pumped solid-state lasers working at kHz repetition rate, enable the time-resolved detection of singlet oxygen (O2(a~1Δ_g)) phosphorescence in photon counting mode, thereby boosting the time-resolution, sensitivity, and dynamic range of this well-established detection technique. Principles underlying this novel approach and selected examples of applications are provided in this perspective, which illustrate the advantages over the conventional analog detection mode.
机译:光电领域的两项最新进展,即新颖的近红外敏感光电倍增管和价格低廉但功能强大的二极管泵浦固态激光器(工作频率为kHz重复频率),使光子中单重态氧(O2(a〜1Δ_g))磷光的时间分辨检测得以实现。计数模式,从而提高了这种完善的检测技术的时间分辨率,灵敏度和动态范围。从这个角度提供了这种新颖方法的基本原理和选定的应用示例,这些示例说明了优于常规模拟检测模式的优点。

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