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Enhanced Photothermal Heating from One-dimensional Assemblies of Au Nanoparticles Encapsulated by TiO2 Shell

机译:增强由TiO2壳包封的Au纳米粒子的一维组件的光热加热

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摘要

One-dimensional assemblies of metal nanoparticles(NPs)may represent an interesting plasmonic superstructure,in which localized surface plasmon resonance of individual NPs can be coupled to modify the strength and wavelength of extinction of metal NPs.In this study,we explored a simple method to assemble Au NPs into a linear chain by utilizing a low-dielectric solvent and salts.The aggregation states of Au NPs were engineered by the concentration of salts,which resulted in isolated and linearly assembled Au NPs.In addition,the TiO2 shell,as a stabilizing layer,was synthesized on the surface of the isolated and assembled Au NPs by a slow hydrolysis process.Because the linearly assembled Au NPs with a TiO2 shell had a broad extinction spectrum by plasmon hybridization,they could absorb more photons under simulated solar irradiation.As a result,the linearly assembled Au NPs with a TiO2 shell exhibited an enhanced photothermal effect,compared with the isolated ones.
机译:金属纳米颗粒(NPs)的一维组装可能代表一种有趣的等离子体超结构,其中单个NPs的局部表面等离子体共振可以耦合以修改金属NPs的消光强度和波长。在本研究中,我们探索了一种利用低介电溶剂和盐将金纳米粒子组装成线性链的简单方法。金纳米颗粒的聚集状态由盐的浓度控制,从而形成孤立的和线性组装的金纳米颗粒。此外,通过缓慢水解过程在分离和组装的金纳米颗粒表面合成了作为稳定层的TiO2壳。由于具有TiO2壳层的线性组装的Au NP通过等离子体激元杂交具有宽的消光光谱,因此它们可以在模拟太阳辐射下吸收更多光子。因此,与孤立的金纳米粒子相比,具有TiO2壳层的线性组装金纳米粒子表现出增强的光热效应。

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