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Ionic Valence Change of Metal Ions in Solution by Femtosecond Laser Excitation Accompanied by White-Light Laser

机译:飞秒激光激发并伴有白光激光的溶液中金属离子的离子价变化

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摘要

Three lanthanide ions (Ln~(3+)), Ln = Eu, Sm, and Yb, and two transition metals, Fe~(3+) and Ag~+, were found to be reduced to the corresponding Ln~(2+), Fe~(2+), and Ag_n in methanol or aqueous solution upon irradiation with intense femtosecond laser pulses. The major excitation wavelength was 800 nm and single-photon-non-resonant with the electronic transitions of metal ion solutions. Laser pulses with wavelengths of 970, 1190, and 1930 nm were used for particular cases. Whenever the white-light laser was generated, the reductions were observed. The reduction mechanisms would be explained in terms of self-focusing, solvated electron formation followed by trapping the electron. The electron ejection under focused beam conditions in solution has been known to be accompanied by white-light laser. In the exceptional case of Fe~(3+) at 800 nm, two-photon excitation of the charge transfer state followed by the reduction would be operative. Fe~(2+) was detected even with an intensity lower than the threshold of the white-light laser generation.
机译:发现三个镧系离子(Ln〜(3+))Ln = Eu,Sm和Yb,以及两种过渡金属Fe〜(3+)和Ag〜+还原为相应的Ln〜(2+用强飞秒激光脉冲辐照在甲醇或水溶液中的Fe,(2+)和Ag_n)。主要的激发波长为800 nm,并且是单光子非共振的,具有金属离子溶液的电子跃迁。在特定情况下使用波长为970、1190和1930 nm的激光脉冲。每当产生白光激光时,观察到减少。还原机理将根据自聚焦,溶剂化电子的形成以及随后的电子俘获来解释。已知在溶液中聚焦束条件下的电子喷射伴随着白光激光。在Fe〜(3+)在800 nm的特殊情况下,电荷转移态的两光子激发然后还原是可行的。即使强度低于白光激光产生的阈值,也检测到Fe〜(2+)。

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