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Photothermal transformation of Au-Ag nanocages under pulsed laser irradiation

机译:光热光谱分析的变换Au-Ag nanocages脉冲激光辐照下

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Pulsed laser irradiation has emerged as an effective means to photothermally transform plasmonic nanostructures after their use in different biomedical applications. However, the ability to predict the products after photothermal transformation requires extensive ex situ studies. Here, we report a systematic study of the photothermal transformation of Au-Ag nanocages with a localized surface plasmon resonance at ca. 750 nm under pulsed laser irradiation at different fluences and a pulse duration of 5 ns. At biologically relevant laser energies, the pulsed laser transforms Au-Ag nanocages into pseudo-spherical, solid nanoparticles. The solid nanoparticles contained similar numbers of Au and Ag atoms to the parent Au-Ag nanocages. At increased laser fluences (16 mJ cm(-2)) and number of pulses (150), the average diameter of the resulting pseudo-spherical particles increased due to the involvement of Ostwald ripening and/or attachment-based growth. The changes in optical properties as a result of the transformation were validated using simulations based on the discrete dipole approximation method, where the spectral profiles and peak positions of the initial and final states matched well with the experimentally derived data. The results may have implications for the future use of Au-Ag nanocages in biomedicine, catalysis, and sensing.
机译:脉冲激光辐照已成为一个有效途径光照变换电浆纳米结构后使用不同的生物医学应用。预测产品的能力光热光谱分析转换需要广泛的前女友现场研究。Au-Ag光热光谱分析转换的nanocages局部表面等离子体共振在ca。脉冲激光下750海里照射在不同将和一个脉冲持续时间5 ns。Au-Ag能量,脉冲激光转换nanocages pseudo-spherical,固体纳米粒子。类似数量的非盟和Ag原子到父Au-Ag nanocages。(在16 mJ厘米(2))和脉冲的数量(在150年),由此产生的平均直径由于pseudo-spherical颗粒增加奥斯特瓦尔德成熟和/或参与attachment-based增长。属性转换的结果使用基于离散模拟进行验证偶极子近似法,光谱概要文件和峰值位置的初始和最终状态匹配实验导出数据。为未来使用Au-Ag nanocages生物医药、催化、传感。

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