首页> 外文期刊>Chemical Physics Letters >Singlet oxygen (~1O_2) generation upon 1270 nm laser irradiation of ground state oxygen ('3 O _2) dissolved in organic solvents: Simultaneous and independent determination of ~1 O _2 production rate and reactivity with chemical traps
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Singlet oxygen (~1O_2) generation upon 1270 nm laser irradiation of ground state oxygen ('3 O _2) dissolved in organic solvents: Simultaneous and independent determination of ~1 O _2 production rate and reactivity with chemical traps

机译:1270 nm激光辐照溶解在有机溶剂中的基态氧('3 O _2)时产生单重态氧(〜1O_2):同时独立确定〜1 O _2的生成速率和与化学陷阱的反应性

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摘要

Direct photo-production of singlet oxygen, via 1270 nm laser excitation of molecular oxygen, has been the focus of recent articles. The chemical traps 1,3-diphenylisobenzofuran and rubrene are used to monitor singlet oxygen production in organic solvents through the O_2[~3Σg-] →O_2[~(1Δg)] transition. In this Letter evolution of the trap concentration is monitored continuously and we propose a new and simple method to measure singlet oxygen production rate. We derive an analytical expression for the trap disappearance rate that allows simultaneous and independent determination of the 1270 nm absorption cross section and the half quenching concentration with the chemical trap.
机译:通过分子氧的1270 nm激光激发直接产生单线态氧已成为近期文章的重点。化学捕集器1,3-二苯基异苯并呋喃和红荧烯用于通过O_2 [〜3Σg-]→O_2 [〜(1Δg)]跃迁监测有机溶剂中单线态氧的产生。在这封信中,对捕集阱浓度的变化进行了连续监测,我们提出了一种新的简单方法来测量单重态氧的产生速率。我们导出了陷阱消失率的解析表达式,该表达式可以同时独立确定1270 nm吸收截面和化学陷阱的半猝灭浓度。

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