Key Laboratory of Photochemical Biomaterials and Energy Storage Materials, Colleges of Heilongjiang Province, Key Laboratory for Photonic and Electronic Bandgap Materials, Ministry of Education, College of Chemistry and Chemical Engineering, Harbin Normal University, Harbin, 150025, People's Republic of China.
Faculty of Chemistry, Northeast Normal University, Changchun, 130024, People's Republic of China.
Mikrochim Acta. 2019 Dec 18;187(1):65. doi: 10.1007/s00604-019-4048-7.
The work describes dually-emissive silicon nanoparticles (Si NPs) in aqueous dispersion with two emissions. The Si NPs respond to different solvents independently with various wavelength fluorescence emissions (red to green). The fluorescence emission wavelengths and emissive color of Si NPs can be regulated by adjustment of the solvents. Based on the effect of the solvent, a series different emission color Si NPs is obtained (Si NPs A, B, C and D), which exhibit different fluorescence emission in various solvents. Notably, the Si NP-A (dispersed in water) exhibited excellent analytical performance in sensing Cu ions with amazing fluorescent response from green to brilliant blue light. The much more enhancement at 436 nm than at 500 nm was due to the changing surface chemistry of Si NPs by Cu, which was dependent to the concentration of Cu tightly. The excellent sensitivity of Si NP-A towards Cu has been testified with the detection limit as low as 0.91 μM by good linear relationship between ratio of fluorescence intensity (I/I) and concentration of Cu (2-30 μM). The Si NP-A can be exploited as a dual-fluorescence visualization agent for latent fingerprints imaging due to the feature of dual emission. The images exhibited green emission under excited at 254 nm, and emerged green light under 365 nm, which allowed the Si NP-A applying in development of latent finger prints at complex background. These acquired fingerprints revealed the particular second-level characteristics. Graphical abstractIllustration of the method for preparation of safranine-dyes silica nanoparticle (Si NPs), the evolution of Si NP-A (V/V = 1:2). Si NP-B (V/V = 1:1), Si NP-C (V/V acetate = 1:1) and Si NP-D (V/V = 1:1), and the application of water-dispersed silica nanoparticles (Si NP-A) to the detection and visualization of latent fingerprints (LFPs).
该工作描述了在水性分散体中具有两种发射的双重发射硅纳米粒子(Si NPs)。Si NPs 可以独立于不同的溶剂以各种波长的荧光发射(红到绿)做出响应。通过调整溶剂,可以调节 Si NPs 的荧光发射波长和发射颜色。基于溶剂的影响,得到了一系列不同发射颜色的 Si NPs(Si NPs A、B、C 和 D),它们在不同溶剂中表现出不同的荧光发射。值得注意的是,Si NP-A(分散在水中)在感测 Cu 离子时表现出出色的分析性能,具有从绿光到亮蓝光的惊人荧光响应。在 436nm 处的增强比在 500nm 处的增强大得多,这是由于 Cu 改变了 Si NPs 的表面化学,这与 Cu 的浓度紧密相关。Si NP-A 对 Cu 的优异灵敏度已通过荧光强度比(I/I)与 Cu 浓度(2-30μM)之间的良好线性关系证明,检测限低至 0.91μM。由于具有双重发射的特征,Si NP-A 可用作双重荧光可视化潜伏指纹成像的试剂。在 254nm 激发下显示绿色发射,在 365nm 下显示绿光,这使得 Si NP-A 可以在复杂背景下应用于潜伏指纹的开发。这些获得的指纹揭示了特定的二级特征。