The Calorimetric Detection of Excited States.

James B Callis
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引用次数: 0

Abstract

Calorimetric techniques offer the photophysicist and photochemist the opportunity to measure a number of parameters of excited states which may be difficult to obtain by other techniques. The calorimetric strategy seeks to measure the heating of a sample resulting from radiationless decays or chemical reactions of excited states. Heating is best measured through volume and pressure transducers, and four calorimeters based on these are described. With calorimetric instrumentation one can perform measurements on samples in the gas, liquid and solid phases over a wide temperature range. Moreover time dependent processes with time constants ranging from microseconds to seconds are amenable to study. Examples of the application of calorimetric techniques to the determination of quantum yields of fluorescence, triplet formation and photochemistry are given.

激发态的量热检测。
量热技术为光物理学家和光化学家提供了测量激发态一系列参数的机会,这些参数可能难以通过其他技术获得。量热策略旨在测量激发态的无辐射衰变或化学反应导致的样品加热。加热最好通过体积和压力传感器进行测量,本文介绍了基于这些传感器的四种量热仪。使用量热仪可以在很宽的温度范围内对气相、液相和固相样品进行测量。此外,还可以研究时间常数从微秒到几秒不等的随时间变化的过程。文中举例说明了量热技术在荧光量子产率测定、三重门形成和光化学方面的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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