单线态氧
光敏剂
光化学
化学
拉曼光谱
亚甲蓝
氧气
水溶液
吸光度
单重态
孟加拉玫瑰
激发态
催化作用
光学
光催化
原子物理学
物理化学
物理
有机化学
生物化学
色谱法
作者
Aristides Marcano Olaizola,Robinson Kuis,Anthony Johnson,David H. Kingsley
标识
DOI:10.1016/j.jphotobiol.2022.112562
摘要
Singlet oxygen is traditionally produced via photosensitizer molecules such as methylene blue, which function as catalysts. Here we investigate stimulated Raman generation of singlet oxygen from dissolved oxygen in both water (H2O) and heavy water (D2O) using nanosecond-pulsed visible blue laser light in the 400-440 nm spectral region without singlet oxygen photosensitizers. We report an oxygen-dependent Stokes peak in the red spectrum (600-670 nm) that is identical when produced in H2O and D2O. These red Stokes photons are not detected when an oxygen quencher is present. Temporal photodepletion of the uric acid absorbance peak at 294 nm is consistent with singlet oxygen generation. We postulate that a two-photon stimulated Raman process produces singlet oxygen from O2 dissolved within the solvents. We note that the energy difference between input and output photons of 0.97 eV is precisely the energy needed to excite O2 to its singlet state.
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