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Laser flash photolysis study of the photochemical formation of colloidal Ag nanoparticles in the pressure of benzophenone

机译:激光闪光光解法在二苯甲酮压力下胶态Ag纳米颗粒的光化学形成

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摘要

Sensitized photoreduction of Ag~+ ions and subsequent formation of colloidal Ag nanoparticles take place when an aqueous solution of a mixture of AgClO_4, sodium dodecylsulfate (SDS) and benzophenone (BP) is irradiated with near-UV light. In this study, the mechanism and kinetics of the reaction have been studied by means of nanosecond laser flash photolysis, time-resolved emission spectroscopy and also steady-state photolysis. Benzophenone ketyl radial (BPK) is formed by the hydrogen abstraction reaction of the benzophenone triplet (BPT) from SDS, which reduces Ag~+ ions. It is found that the yield of colloidal Ag nanoparticle formation decreases remarkably with increasing concentration of Ag~+ ions, indicating the efficient quenching process of BPT by Ag~+ ions. Rate constants for the oxidation of BPK as well as the quenching of BPT by Ag~+ ions in SDS micellar solution are considerably larger than those expected in the bulk solution, reflecting that Ag~+ ions and BP molecules are concentrated in the SDS micelles. The rate of colloidal Ag nanoparticle formation, V_Ag, and BP photobleach, V_BP, under steady-state irradiation with near-UV light (lambda = 365 nm) were evaluated and the dependence of V_Ag and V_BP on the concentration of Ag~+ ions is interpreted quantitatively in terms of rate constants estimated by laser flash photolysis.
机译:当用近紫外光照射AgClO_4,十二烷基硫酸钠(SDS)和二苯甲酮(BP)的混合物的水溶液时,Ag〜+离子被感光还原并随后形成胶态Ag纳米颗粒。在这项研究中,已经通过纳秒激光闪光光解,时间分辨发射光谱以及稳态光解研究了反应的机理和动力学。二苯甲酮酮基放射状(BPK)是通过SDS中二苯甲酮三重态(BPT)的氢提取反应而形成的,该反应会还原Ag〜+离子。发现随着Ag〜+离子浓度的增加,胶体Ag纳米颗粒形成的产率显着降低,这表明Ag〜+离子对BPT的有效猝灭过程。 SDS胶束溶液中BPK的氧化速率常数以及Ag〜+离子对BPT的猝灭速率常数比本体溶液中的预期常数大得多,这反映了Ag〜+离子和BP分子集中在SDS胶束中。评估了在近紫外光(λ= 365 nm)稳态照射下胶态银纳米颗粒的形成速率V_Ag和BP光漂白剂V_BP,得出了V_Ag和V_BP对Ag〜+离子浓度的依赖性。用激光闪光光解法估算的速率常数定量解释。

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