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Simultaneous UV/Vis spectroscopy and surface enhanced Raman scattering of nanoparticle formation and aggregation in levitated droplets

机译:同时紫外/可见光谱和表面增强的拉曼散射,悬浮液滴中纳米颗粒的形成和聚集

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The formation and growth of hydroxylamine reduced silver nanoparticles were investigated by simultaneous Raman and UV/Vis spectroscopy coupled to an acoustic levitator as a sample holder. Based on the UV/Vis spectra, a two step particle formation mechanism with fast initial formation and adjacent coalescence can be proposed for the reduction of silver nitrate with hydroxylamine. The presence of the analyte adenine during particle formation resulted in differences in the adenine SERS signature compared to experiments, where adenine was added after particle synthesis. It was possible to monitor the adenine and sodium chloride induced aggregation of the nanoparticles and its dynamics based on both the extinction spectra and the SERS data. Correlating the information from the extinction spectra with the SERS intensity, the maximum SERS signals were observed at maximum extinction of the aggregated nanoparticle solution at the Raman excitation wavelength.
机译:通过同时拉曼光谱和紫外/可见光谱结合声学悬浮剂作为样品架的方法研究了羟胺还原的银纳米颗粒的形成和生长。基于UV / Vis光谱,可以提出具有快速初始形成和相邻合并的两步颗粒形成机理,用于用羟胺还原硝酸银。与在颗粒合成后添加腺嘌呤的实验相比,颗粒形成过程中分析物腺嘌呤的存在导致腺嘌呤SERS标记的差异。基于消光光谱和SERS数据,可以监测腺嘌呤和氯化钠诱导的纳米颗粒聚集及其动力学。将来自消光光谱的信息与SERS强度相关联,在聚集纳米颗粒溶液在拉曼激发波长下最大消光下观察到最大SERS信号。

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