Science. 1995 Jun 9;268(5216):1443-8. doi: 10.1126/science.268.5216.1443.
Determining the detailed photoreactivity of radicals that are of importance in atmospheric processes requires information from both laboratory and field measurements and theoretical calculations. Laboratory experiments and quantum calculations have been used to develop a comprehensive understanding of the photoreactivity of chlorine dioxide (OCIO). The photoreactivity is strongly dependent on the medium (gas phase, liquid solution, or cryogenic matrix). These data reveal details of the complex chemistry of OCIO. The potential role of this radical in stratospheric ozone depletion is discussed in accord with these laboratory measurements.
确定在大气过程中具有重要意义的自由基的详细光反应性需要来自实验室和现场测量以及理论计算的信息。实验室实验和量子计算已被用于开发对二氧化氯 (OCIO) 光反应性的全面理解。光反应性强烈依赖于介质(气相、液相或低温基质)。这些数据揭示了 OCIO 复杂化学的细节。根据这些实验室测量结果,讨论了该自由基在平流层臭氧消耗中的潜在作用。