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Stability analysis of silver nanoparticle suspensions by cyclic voltammetry

机译:循环伏安法的银纳米粒子悬浮液的稳定性分析

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We report the application of cyclic voltammetry and absorption spectroscopy to the characterization and study of the stability of silver colloids in water. The samples are prepared via chemical reduction and the reactions are catalyzed by irradiation with white light. The electrochemical response is related to the characteristic sample surface plasmon resonance (SPR) in the UV-visible absorption spectra. Cyclic voltammetry shows a characteristic reduction peak whose position is specific to each analyzed sample. Optical analysis of a colloid precursor during a 12 h time span, under low-power white-light irradiation, shows that nanoparticles undergo change in size and surface state (absorption bands splitting and inversion) to attain the "stable" colloidal form. While the absorption spectrum bands of the precursor return almost periodically to similar positions, the cyclic voltammogram characteristic reduction peak is displaced as a function of time. Finally, we follow the SPR changes of one "stable" colloid being subjected to electrolysis, heating, and sunlight irradiation, for environmental remediation purposes. Sunlight exposure produces the most significant SPR intensity drop, but the electrochemical technique shows itself promising as well. (C) 2020 Optical Society of America
机译:我们报告循环伏安法和吸收光谱在水中银胶体稳定性的表征及研究。样品通过化学还原制备,并通过用白光照射催化反应。电化学响应与UV可见吸收光谱中的特征样品表面等离子体共振(SPR)有关。循环伏安显示特征减少峰,其位置特异于每个分析的样品。在低功率白光照射下12小时时间跨度期间胶体前体的光学分析表明,纳米颗粒的尺寸和表面状态(吸收带分裂和反转)发生变化以获得“稳定”的胶体形式。虽然前体的吸收光谱带几乎定期返回到类似的位置,但是循环伏安图特征减少峰作为时间的函数移位。最后,我们遵循对环境修复目的进行电解,加热和阳光照射的一个“稳定”胶体的SPR变化。阳光曝光产生最高的SPR强度下降,但电化学技术也表现出承诺。 (c)2020美国光学学会

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    《Applied optics》 |2020年第13期|共7页
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