Department of Chemistry, The University of Hong Kong , Pokfulam Road, Hong Kong SAR, People's Republic of China.
ACS Appl Mater Interfaces. 2016 Nov 2;8(43):29668-29675. doi: 10.1021/acsami.6b09668. Epub 2016 Oct 24.
Metal alloy nanoparticles (NPs) offer a new combination of unique physicochemical properties based on their pure counterparts, which can facilitate the development of novel analytical methods. Here, we demonstrated that Ag-Au alloy NPs could be utilized for optical and mass spectrometric imaging of latent fingerprints (LFPs) with improved image contrast, stability, and detection sensitivity. Upon deposition of Ag-Au alloy NPs (Ag:Au = 60:40 wt %), ridge regions of the LFP became amber colored, while the groove regions appeared purple-blue. The presence of Au in the Ag-Au alloy NPs suppressed aggregation behavior compared to pure AgNPs, thus improving the stability of the developed LFP images. In addition, the Ag component in the Ag-Au alloy NPs enhanced optical absorption efficiency compared to pure AuNPs, resulting in higher contrast LFP images. Moreover, varying the Ag-Au ratio could enable the tuning of the resulting surface plasmonic resonance absorption and hence affect image contrast. Furthermore, the Ag-Au alloy NPs assisted the surface-assisted laser desorption/ionization MS analysis of chemical and biochemical compounds in LFPs, with better detection sensitivity than either pure AgNPs or AuNPs.
金属合金纳米粒子(NPs)提供了独特的物理化学性质的新组合,基于其纯对应物,可以促进新型分析方法的发展。在这里,我们证明了 Ag-Au 合金 NPs 可用于光学和质谱成像的潜在指纹(LFPs)与改善图像对比度,稳定性和检测灵敏度。在沉积 Ag-Au 合金 NPs(Ag:Au = 60:40wt%)后,LFPs 的脊区域变成琥珀色,而凹槽区域呈现蓝紫色。与纯 AgNPs 相比,Ag-Au 合金 NPs 中的 Au 抑制了聚集行为,从而提高了开发的 LFPs 图像的稳定性。此外,Ag-Au 合金 NPs 中的 Ag 成分与纯 AuNPs 相比,提高了光学吸收效率,从而产生了更高对比度的 LFPs 图像。此外,改变 Ag-Au 比例可以调整所得表面等离子体共振吸收,从而影响图像对比度。此外,Ag-Au 合金 NPs 辅助 LFPs 中的化学和生物化学化合物的表面辅助激光解吸/电离 MS 分析,与纯 AgNPs 或 AuNPs 相比,具有更好的检测灵敏度。