Crosby G A, Demas J N, Callis J B
Department of Chemistry, Washington State University, Pullman, Washington 99163.
Department of Chemistry, University of Virginia, Charlottesville, Virginia 22901.
J Res Natl Bur Stand A Phys Chem. 1972 Nov-Dec;76A(6):561-577. doi: 10.6028/jres.076A.050.
Recent developments in several areas of chemistry, laser technology, photodetector instrumentation, and calorimetry are surveyed, and their probable impact on the measurement of quantum yields is assessed. Chemical developments include: (a) synthesis and design of new luminescent molecules that could possibly serve as standards, (b) application of improved separation techniques to provide samples of extreme purity, and (c) advances in photochemistry that portend the development of wide-range chemical actinometers. The potential use of lasers in quantum-yield measurements and their advantages over conventional sources for application in both optical and calorimetric techniques are pointed out. New methods of quantum-yield measurements, based on the novel characteristics of laser pump sources, are suggested, including the feasibility of measuring yields under time-resolved conditions and of employing internal standards. The possible lifting of wavelength restrictions on both laser sources and detector devices and the implications of these developments for extending the spectral range of quantum-yield measurements are discussed. The current status of calorimetry for determining yields is surveyed, and the impact of recent technology on the feasibility of developing calorimetric methods competitive with optical methods is assessed.
本文综述了化学、激光技术、光电探测器仪器以及量热法等多个领域的最新进展,并评估了它们对量子产率测量可能产生的影响。化学领域的进展包括:(a)合成和设计可能用作标准的新型发光分子;(b)应用改进的分离技术以提供极高纯度的样品;(c)光化学方面的进展预示着宽范围化学光量计的发展。指出了激光在量子产率测量中的潜在用途及其在光学和量热技术应用中相对于传统光源的优势。提出了基于激光泵浦源新特性的量子产率测量新方法,包括在时间分辨条件下测量产率和采用内标的可行性。讨论了激光源和探测器设备波长限制可能的解除以及这些进展对扩展量子产率测量光谱范围的影响。综述了用于确定产率的量热法的现状,并评估了近期技术对开发与光学方法竞争的量热法可行性的影响。