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UV/Vis+ photochemistry database: Structure, content and applications
Journal of Quantitative Spectroscopy and Radiative Transfer ( IF 2.3 ) Pub Date : 2020-05-23 , DOI: 10.1016/j.jqsrt.2020.107056
Andreas Noelle, Ann Carine Vandaele, Javier Martin-Torres, Chenyi Yuan, Balabhadrapatruni N. Rajasekhar, Askar Fahr, Gerd K. Hartmann, David Lary, Yuan-Pern Lee, Paulo Limão-Vieira, Robert Locht, Kristopher McNeill, John J. Orlando, Farid Salama, Richard P. Wayne

The “science-softCon UV/Vis+ Photochemistry Database” (www.photochemistry.org) is a large and comprehensive collection of EUV-VUV-UV–Vis-NIR spectral data and other photochemical information assembled from published peer-reviewed papers. The database contains photochemical data including absorption, fluorescence, photoelectron, and circular and linear dichroism spectra, as well as quantum yields and photolysis related data that are critically needed in many scientific disciplines.

This manuscript gives an outline regarding the structure and content of the “science-softCon UV/Vis+ Photochemistry Database”. The accurate and reliable molecular level information provided in this database is fundamental in nature and helps in proceeding further to understand photon, electron and ion induced chemistry of molecules of interest not only in spectroscopy, astrochemistry, astrophysics, Earth and planetary sciences, environmental chemistry, plasma physics, combustion chemistry but also in applied fields such as medical diagnostics, pharmaceutical sciences, biochemistry, agriculture, and catalysis. In order to illustrate this, we illustrate the use of the UV/Vis+ Photochemistry Database in four different fields of scientific endeavor.



中文翻译:

UV/Vis+ 光化学数据库:结构、内容和应用

“science-softCon UV/Vis +光化学数据库”(www.photochemistry.org) 是一个庞大而全面的 EUV-VUV-UV-Vis-NIR 光谱数据和其他光化学信息的集合,这些信息来自已发表的同行评审论文。该数据库包含光化学数据,包括吸​​收、荧光、光电子、圆形和线性二色性光谱,以及许多科学学科急需的量子产率和光解相关数据。

这份手稿概述了“science-softCon UV/Vis + Photochemistry Database”的结构和内容。该数据库中提供的准确可靠的分子水平信息是自然界的基础,有助于进一步了解光子、电子和离子诱导的分子化学,不仅在光谱学、天体化学、天体物理学、地球和行星科学、环境化学、等离子体物理、燃烧化学以及医学诊断、制药科学、生物化学、农业和催化等应用领域。为了说明这一点,我们说明了紫外/可见光+光化学数据库在四个不同科学领域的使用。

更新日期:2020-05-23
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