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1264nm 辐射引发的水发光氧依赖性自激振荡。

Oxygen-dependent auto-oscillations of water luminescence triggered by the 1264 nm radiation.

机构信息

Institute of Theoretical and Experimental Biophysics, Russian Academy of Sciences, Pushchino, Moscow Region, 142290 Russia.

出版信息

J Phys Chem B. 2011 Jun 16;115(23):7693-8. doi: 10.1021/jp2023154. Epub 2011 May 19.

Abstract

A 5-min exposure of air-saturated bidistilled water to low-intensity laser infrared radiation at the wavelength of the electronic transition of dissolved oxygen to the singlet state ((3)∑(g)(-)→ (1)Δ(g)) induces, after a long latent period, auto-oscillations of water luminescence in the blue-green region, which last many hours. Laser irradiation causes the accumulation of hydrogen peroxide, which depends on the concentration of dissolved oxygen. The auto-oscillations do not arise if water is irradiated beyond the oxygen absorption band and if the oxygen is removed from water. The wavelet transform analysis of luminescence records indicates that there are two characteristic periods of pulsations of about 300 and 1150 s. The results obtained suggest that auto-oscillations are triggered by photoinduced singlet oxygen (1)Δ(g), and this phenomenon is closely related to formation of hydrogen peroxide.

摘要

在低强度激光红外辐射下,将空气饱和的双蒸馏水暴露于溶解氧的电子跃迁到单重态((3)∑(g)(-)→ (1)Δ(g))的波长下 5 分钟后,会在很长的潜伏期后引发水在蓝绿光区域的自动发光,持续数小时。激光辐照会导致过氧化氢的积累,这取决于溶解氧的浓度。如果水被辐照到氧气吸收带之外,或者水中的氧气被去除,就不会产生自动振荡。对发光记录的小波变换分析表明,存在两个约 300 和 1150 秒的脉冲的特征周期。所得结果表明,自动振荡是由光诱导的单重态氧(1)Δ(g)触发的,这种现象与过氧化氢的形成密切相关。

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