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The synthesizing approach analysis of hollow Ag/Au nanoparticles in replacement reaction between silver nanoparticle and chloroauric acid

机译:中空Ag / Au纳米粒子在银纳米粒子和氯叶酸中置换反应中的中空Ag / Au纳米粒子的合成方法分析

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Hollow Ag/Au nanoparticles have many potential applications in the biomedical field due to the flexible tunability of the LSPR and larger electric field enhancement factor compared to their solid counterparts. For the fabrication of hollow Ag/Au nanoparticles, the replacement reaction between HAuCl4 and Ag nanoparticles is considered to be effective. However, the reaction mechanism and the formation procedure of the hollow interior is not fully determined. In the present study, we proposed three possible reaction approaches (shell-to-core, regular core-to-shell and off-center core-to-shell) during the preparation. Based on the analysis of absorption cross-section and local electric field distribution calculated using finite element method of the products at each reaction stage, the off-center core-to-shell synthesizing approach is assumed to be the most reasonable and the electric enhancement factor is the largest. The further experimental results also support our assumption. The reveal of the reaction procedure between HAuCl4 and Ag nanoparticles is believed to help improve the morphology modulation of the hollow Ag/Au nanoparticles and their application in the biomedical field.
机译:由于LSPR的柔性可调性和与它们的固体对应物相比,中空AG / Au纳米粒子在生物医学领域具有许多潜在的应用。对于中空Ag / Au纳米颗粒的制备,HauCl4和Ag纳米粒子之间的替换反应被认为是有效的。然而,不完全确定反应机理和中空内部的形成过程。在本研究中,我们在制备期间提出了三种可能的反应方法(壳 - 核,常规核心 - 壳和离心核心核心 - 壳)。基于使用各种反应阶段的产品的有限元方法计算的吸收横截面和局部电场分布的分析,假设偏心芯与壳合成方法是最合理和电力增强因子是最大的。进一步的实验结果也支持我们的假设。据信HauCl4和Ag纳米粒子之间的反应程序揭示有助于改善中空Ag / Au纳米颗粒的形态调节及其在生物医学领域的应用。

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