Zhang Zhuomin, Zhao Cheng, Li Gongke
School of Chemistry and Chemical Engineering, Sun Yat-sen University, Guangzhou 510275, China.
School of Chemistry and Chemical Engineering, Sun Yat-sen University, Guangzhou 510275, China.
Talanta. 2016 Jul 1;154:346-53. doi: 10.1016/j.talanta.2016.03.068. Epub 2016 Mar 20.
Achieving reproducible signals is a key point to improve the analytical precision and accuracy of surface enhanced Raman scattering (SERS) technique and further expand the application scope of SERS for on-site and rapid analysis of real sample with complex matrice. In this work, a novel Au@hydroxyl-functionalized polystyrene (Au@PS-OH) substrate was prepared by atom transfer radical polymerization and chemical assembly method, which possessed promised potential for the rapid and sequential analysis of multisamples coupling with SERS technique. Au@PS-OH substrate with regular nanoarrayed morphology possessed excellent anti-agglomeration capability even for testing solutions with strong basicity or acidity, mechanic and chemical stability due to the large amount of Au nanoparticles homogeneously and stably fixed on substrate surface. Moreover, excellent hydrophobicity of Au@PS-OH substrate could keep testing droplets of multiple samples stable and uniform spherical shape with similar contact angles to substrate, which guaranteed the reproducible SERS light paths and SERS signals during real sequential analysis. Then, an Au@PS-OH based SERS analytical method was developed and practically applied for the sequential determination of trace 4-aminoazobenzene in various textiles. It was satisfactory that the contents of trace 4-aminoazobenzene in black woolen, green woolen and yellow fiber cloth could be actually found and calculated to be 106.4, 120.9 and 140.8mg/kg with good recoveries of 76.0-118.9% and relative standard deviations of 1.6-5.1%. It is expected that this SERS method is suitable for on-site and rapid analysis of multiple samples in a short period.
获得可重现的信号是提高表面增强拉曼散射(SERS)技术分析精度和准确性,并进一步扩大SERS在复杂基质实际样品现场快速分析应用范围的关键。在本工作中,通过原子转移自由基聚合和化学组装方法制备了一种新型的Au@羟基官能化聚苯乙烯(Au@PS-OH)基底,其在与SERS技术联用对多个样品进行快速顺序分析方面具有潜在应用前景。具有规则纳米阵列形态的Au@PS-OH基底即使对于强碱性或强酸性测试溶液也具有优异的抗团聚能力,并且由于大量金纳米颗粒均匀稳定地固定在基底表面,具有机械和化学稳定性。此外,Au@PS-OH基底优异的疏水性能够使多个样品的测试液滴保持稳定且呈均匀的球形,与基底的接触角相似,这保证了实际顺序分析过程中可重现的SERS光路和SERS信号。然后,开发了一种基于Au@PS-OH的SERS分析方法,并实际应用于各种纺织品中痕量4-氨基偶氮苯的顺序测定。令人满意的是,黑色羊毛、绿色羊毛和黄色纤维布中痕量4-氨基偶氮苯的含量实际测定并计算为106.4、120.9和140.8mg/kg,回收率良好,为76.0-118.9%,相对标准偏差为1.6-5.1%。预计该SERS方法适用于在短时间内对多个样品进行现场快速分析。