Gu Hai-Xin, Xue Lin, Zhang Yong-Feng, Li Da-Wei, Long Yi-Tao
Key Laboratory for Advanced Materials and Department of Chemistry, East China University of Science and Technology , Shanghai 200237, P. R. China.
ACS Appl Mater Interfaces. 2015 Feb 4;7(4):2931-6. doi: 10.1021/am508403k. Epub 2015 Jan 21.
A facile approach to fabricating a surface-enhanced Raman scattering (SERS)-active chip by integrating silver dendrites with copper substrate through a one-step process was explored. The structures of dendrites were synthesized and controlled by an AgNO3/PVP aqueous system, and the fabrication parameters amount of AgNO3/PVP and reaction time were systematically investigated. The optimized silver dendrites, closely aggregated on the surface of the copper chip, exhibited high SERS activity for detecting rhodamine 6G at a concentration as low as 3.2 × 10(-11) M. Meanwhile, the prepared SERS-active chip displayed a high thermal stability and good reproducibility. Moreover, the potential application for analysis of polycyclic aromatic hydrocarbons was demonstrated by detection of fluoranthene at a low concentration of 4.5 × 10(-10) M. This SERS-active chip prepared by the convenient and high-yield method would be a promising means for rapid detection under field conditions.
探索了一种通过一步法将银树枝状晶体与铜基底集成来制备表面增强拉曼散射(SERS)活性芯片的简便方法。通过AgNO₃/PVP水体系合成并控制树枝状晶体的结构,并系统研究了AgNO₃/PVP的用量和反应时间等制备参数。优化后的银树枝状晶体紧密聚集在铜芯片表面,对浓度低至3.2×10⁻¹¹ M的罗丹明6G表现出高SERS活性。同时,制备的SERS活性芯片具有高热稳定性和良好的重现性。此外,通过检测低浓度为4.5×10⁻¹⁰ M的荧蒽,证明了该芯片在多环芳烃分析中的潜在应用。这种通过简便且高产率方法制备的SERS活性芯片将成为现场条件下快速检测的一种有前途的手段。