Department of Chemical Sciences, University of Padova, via Marzolo 1, I-35131 Padova, Italy.
Nanoscale. 2015 May 21;7(19):8782-92. doi: 10.1039/c5nr00823a.
Although the excitation of localized surface plasmons is associated with enhanced scattering and absorption of incoming photons, only the latter is relevant for the efficient conversion of light into heat. Here we show that the absorption cross section of gold nanoparticles is sensibly increased when iron is included in the lattice as a substitutional dopant, i.e. in a gold-iron nanoalloy. Such an increase is size and shape dependent, with the best performance observed in nanoshells where a 90-190% improvement is found in a size range that is crucial for practical applications. Our findings are unexpected according to the common belief and previous experimental observations that alloys of Au with transition metals show a depressed plasmonic response. These results are promising for the design of efficient plasmonic converters of light into heat and pave the way to more in-depth investigations of the plasmonic properties in noble metal nanoalloys.
尽管局域表面等离激元的激发与入射光子的增强散射和吸收有关,但只有后者与光高效转化为热有关。在这里,我们表明,当铁作为替代掺杂剂(即金-铁纳米合金)包含在晶格中时,金纳米粒子的吸收截面会显著增加。这种增加与尺寸和形状有关,在纳米壳中观察到最佳性能,在对实际应用至关重要的尺寸范围内发现了 90-190%的提高。根据普遍的观点和以前的实验观察,我们的发现与 Au 与过渡金属形成的合金表现出抑制等离激元响应的观点相矛盾。这些结果对于设计高效的光热等离子体转换器很有前景,并为进一步研究贵金属纳米合金的等离子体特性铺平了道路。